Search for Low-Mass Dijet Resonances Using Trigger-Level Jets with the ATLAS Detector in <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>p</mml:mi><mml:mi>p</mml:mi></mml:math> Collisions at <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:msqrt><mml:mi>s</mml:mi></mml:msqrt><mml:mo>=</mml:mo><mml:mn>13</mml:mn><mml:mtext> </mml:mtext><mml:mtext> </mml:mtext><mml:mi>TeV</mml:mi></mml:math>

M. Aaboud(Mohamed I University), G. Aad(Centre National de la Recherche Scientifique), B. Abbott(University of Oklahoma), O. Abdinov(Azerbaijan National Academy of Sciences), B. Abeloos(Université Paris-Sud), S. H. Abidi(University of Toronto), O. S. AbouZeid(University of California, Santa Cruz), N. L. Abraham(University of Sussex), H. Abramowicz(Tel Aviv University), H. Abreu(Technion – Israel Institute of Technology), Y. Abulaiti(Argonne National Laboratory), B. S. Acharya(The Abdus Salam International Centre for Theoretical Physics (ICTP)), S. Adachi(The University of Tokyo), L. Adamczyk(AGH University of Krakow), J. Adelman(Northern Illinois University), M. Adersberger(Ludwig-Maximilians-Universität München), A. Adiguzel(Boğaziçi University), T. Adye(Rutherford Appleton Laboratory), A. A. Affolder(University of California, Santa Cruz), Y. Afik(Technion – Israel Institute of Technology), C. Agheorghiesei(Alexandru Ioan Cuza University), J. A. Aguilar–Saavedra(Universidad de Granada), F. Ahmadov(Joint Institute for Nuclear Research), G. Aielli(University of Rome Tor Vergata), S. Akatsuka(Kyoto University), T. P. A. Åkesson(Lund University), E. Akilli(University of Geneva), A. V. Akimov(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), G. L. Alberghi(Osservatorio astronomico di Bologna), J. Albert(University of Victoria), P. Albicocco(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), M. J. Alconada Verzini(Consejo Nacional de Investigaciones Científicas y Técnicas), S. Alderweireldt(Radboud University Nijmegen), M. Aleksa(European Organization for Nuclear Research), I. N. Aleksandrov(Joint Institute for Nuclear Research), C. Alexa(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), G. Alexander(Tel Aviv University), T. Alexopoulos(National Technical University of Athens), M. Alhroob(University of Oklahoma), B. Ali(Czech Technical University in Prague), G. Alimonti(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), J. Alison(Fermi National Accelerator Laboratory), S. P. Alkire(University of Washington), C. Allaire(Université Paris-Sud), B. M. M. Allbrooke(University of Sussex), B. W. Allen(University of Oregon), P. P. Allport(University of Birmingham), A. Aloisio(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), A. Alonso(University of Copenhagen), F. Alonso(Consejo Nacional de Investigaciones Científicas y Técnicas), C. Alpigiani(University of Washington), A. A. Alshehri(University of Glasgow), M. I. Alstaty(Centre National de la Recherche Scientifique), B. Álvarez González(European Organization for Nuclear Research), D. Álvarez Piqueras(Universitat de València), M. G. Alviggi(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), B. T. Amadio(Lawrence Berkeley National Laboratory), Y. Amaral Coutinho(Universidade Federal do Rio de Janeiro), L. Ambroz(University of Oxford), C. Amelung(Brandeis University), D. Amidei(University of Michigan), S. P. Amor Dos Santos(LIP - Laboratory of Instrumentation and Experimental Particle Physics), S. Amoroso(European Organization for Nuclear Research), C. S. Amrouche(University of Geneva), C. Anastopoulos(University of Sheffield), L. S. Ancu(University of Geneva), N. Andari(University of Birmingham), T. Andeen(The University of Texas at Austin), C. F. Anders(Heidelberg University), J. K. Anders(University of Bern), K. J. Anderson(Fermi National Accelerator Laboratory), A. Andreazza(University of Milan), V. Andrei(Heidelberg University), S. Angelidakis(Centre National de la Recherche Scientifique), I. Angelozzi(National Institute for Subatomic Physics), A. Angerami(Columbia University), A. V. Anisenkov(Novosibirsk State University), A. Annovi(Istituto Nazionale di Fisica Nucleare, Sezione di Pisa), C. Antel(Heidelberg University), M. T. Anthony(University of Sheffield), M. Antonelli(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), D. J. A. Antrim(University of California, Irvine), F. Anulli(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), M. Aoki(High Energy Accelerator Research Organization), L. Aperio Bella(European Organization for Nuclear Research), G. Arabidze(Michigan State University), Y. Arai(High Energy Accelerator Research Organization), J. P. Araque(LIP - Laboratory of Instrumentation and Experimental Particle Physics), V. Araujo Ferraz(Universidade Federal do Rio de Janeiro), R. Araujo Pereira(Universidade Federal do Rio de Janeiro), A. T. H. Arce(Duke University), R. E. Ardell(Royal Holloway University of London), F. A. Arduh(Consejo Nacional de Investigaciones Científicas y Técnicas), J-F. Arguin(Institute of Particle Physics), S. Argyropoulos(University of Iowa), A. J. Armbruster(European Organization for Nuclear Research), L. J. Armitage(Queen Mary University of London), O. Arnaez(University of Toronto), H. Arnold(National Institute for Subatomic Physics), M. Arratia(University of Cambridge), O. Arslan(University of Bonn), A. Artamonov(Institute for Theoretical and Experimental Physics), G. Artoni(University of Oxford), S. Artz(Johannes Gutenberg University Mainz), S. Asai(The University of Tokyo), N. Asbah(Deutsches Elektronen-Synchrotron DESY), A. Ashkenazi(Tel Aviv University), E. M. Asimakopoulou(Uppsala University), L. Asquith(University of Sussex), K. Assamagan(Brookhaven National Laboratory), R. Astalos(Comenius University Bratislava), R. J. Atkin(University of Cape Town), M. Atkinson(University of Illinois Urbana-Champaign), N. B. Atlay(University of Siegen), K. Augsten(Czech Technical University in Prague), G. Avolio(European Organization for Nuclear Research), R. Avramidou(University of Science and Technology of China), B. Axen(Lawrence Berkeley National Laboratory), M. K. Ayoub(Chinese Academy of Sciences), G. Azuelos(Institute of Particle Physics), A. E. Baas(Heidelberg University), M. J. Baca(University of Birmingham), H. Bachacou(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), K. Bachas(University of Salento), M. Backes(University of Oxford), P. Bagnaia(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), M. Bahmani(Institute of Nuclear Physics, Polish Academy of Sciences), H. Bahrasemani(Simon Fraser University), A. J. Bailey(Universitat de València), J. T. Baines(Rutherford Appleton Laboratory), M. Bajic(University of Copenhagen), O. K. Baker(Yale University), P. J. Bakker(National Institute for Subatomic Physics), D. Bakshi Gupta(Louisiana Tech University), E. M. Baldin(Novosibirsk State University), P. Balek(Weizmann Institute of Science), F. Balli(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), W. K. Balunas(University of Pennsylvania), E. Banaś(Institute of Nuclear Physics, Polish Academy of Sciences), A. Bandyopadhyay(University of Bonn), S. Banerjee(University of Wisconsin–Madison), A. A. E. Bannoura(University of Wuppertal), L. Barak(Tel Aviv University), W. M. Barbe(Centre National de la Recherche Scientifique), E. L. Barberio(The University of Melbourne), D. Barberis(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), M. Barbero(Centre National de la Recherche Scientifique), T. Barillari(Max Planck Institute for Physics), M-S. Barisits(European Organization for Nuclear Research), J. Barkeloo(University of Oregon), T. Barklow(SLAC National Accelerator Laboratory), N. Barlow(University of Cambridge), R. Barnea(Technion – Israel Institute of Technology), S. L. Barnes(Shanghai Jiao Tong University), B. M. Barnett(Rutherford Appleton Laboratory), R. M. Barnett(Lawrence Berkeley National Laboratory), Z. Barnovska-Blenessy(University of Science and Technology of China), A. Baroncelli(Istituto Nazionale di Fisica Nucleare, Sezione di Roma Tre), G. Barone(Brandeis University), A. J. Barr(University of Oxford), L. Barranco Navarro(Universitat de València), F. Barreiro(Universidad Autónoma de Madrid), J. Barreiro Guimarães da Costa(Chinese Academy of Sciences), R. Bartoldus(SLAC National Accelerator Laboratory), A. E. Barton(Lancaster University), P. Bartos(Comenius University Bratislava), A. Basalaev(Kurchatov Institute), A. Bassalat(Université Paris-Sud), R. L. Bates(University of Glasgow), S. J. Batista(University of Toronto), S. Batlamous(Mohammed V University), J.R. Batley(University of Cambridge), M. Battaglia(University of California, Santa Cruz), M. Bauce(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), F. Bauer(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), K. T. Bauer(University of California, Irvine), H. S. Bawa(SLAC National Accelerator Laboratory), J. B. Beacham(The Ohio State University), M. D. Beattie(Lancaster University), T. Beau(Centre National de la Recherche Scientifique), P. H. Beauchemin(Tufts University), P. Bechtle(University of Bonn), H. C. Beck(University of Bern), H. P. Beck(University of Bern), K. Becker(University of Freiburg), M. Becker(Johannes Gutenberg University Mainz), C. Becot(New York University), A. J. Beddall(Bahçeşehir University), A. J. Beddall(Bahçeşehir University), V. A. Bednyakov(Joint Institute for Nuclear Research), M. Bedognetti(National Institute for Subatomic Physics), C. P. Bee(Stony Brook University), T. A. Beermann(European Organization for Nuclear Research), M. Begalli(Universidade Federal do Rio de Janeiro), M. Begel(Brookhaven National Laboratory), A. Behera(Stony Brook University), J. K. Behr(Deutsches Elektronen-Synchrotron DESY), A. S. Bell(University College London), G. Bella(Tel Aviv University), L. Bellagamba(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), A. Bellerive(Carleton University), M. Bellomo(Technion – Israel Institute of Technology), K. Belotskiy(National Research Nuclear University MEPhI), N. L. Belyaev(National Research Nuclear University MEPhI), O. Benary(Tel Aviv University), D. Benchekroun(University of Hassan II Casablanca), M. Bender(Ludwig-Maximilians-Universität München), N. Benekos(National Technical University of Athens), Y. Benhammou(Tel Aviv University), E. Benhar Noccioli(Yale University), J. F. Benitez(University of Iowa), D. P. Benjamin(Duke University), M. Benoit(University of Geneva), James Bensinger(Brandeis University), S. Bentvelsen(National Institute for Subatomic Physics), L. Beresford(University of Oxford), M. Beretta(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), D. Berge(Deutsches Elektronen-Synchrotron DESY), E. Bergeaas Kuutmann(Uppsala University), N. Berger(Centre National de la Recherche Scientifique), L. J. Bergsten(Brandeis University), J. Beringer(Lawrence Berkeley National Laboratory), S. Berlendis(Institut polytechnique de Grenoble), N. R. Bernard(University of Massachusetts Amherst), G. Bernardi(Centre National de la Recherche Scientifique), C. Bernius(SLAC National Accelerator Laboratory), F. U. Bernlochner(University of Bonn), T. Berry(Royal Holloway University of London), P. Berta(Johannes Gutenberg University Mainz), C. Bertella(Chinese Academy of Sciences), G. Bertoli(Stockholm University), I. A. Bertram(Lancaster University), G. J. Besjes(University of Copenhagen), O. Bessidskaia Bylund(Stockholm University), M. Bessner(Deutsches Elektronen-Synchrotron DESY), N. Besson(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. Bethani(University of Manchester), S. Bethke(Max Planck Institute for Physics), A. Betti(University of Bonn), A. J. Bevan(Queen Mary University of London), J. Beyer(Max Planck Institute for Physics), R. M. Bianchi(University of Pittsburgh), O. Biebel(Ludwig-Maximilians-Universität München), D. Biedermann(Humboldt-Universität zu Berlin), R. Bielski(University of Manchester), K. Bierwagen(Johannes Gutenberg University Mainz), N. V. Biesuz(University of Pisa), M. Biglietti(Istituto Nazionale di Fisica Nucleare, Sezione di Roma Tre), T. R. V. Billoud(Institute of Particle Physics), M. Bindi(University of Göttingen), A. Bingul(Gaziantep University), C. Bini(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), S. Biondi(Osservatorio astronomico di Bologna), T. Bisanz(University of Göttingen), J. P. Biswal(Tel Aviv University), C. Bittrich(Technische Universität Dresden), D. M. Bjergaard(Duke University), J. E. Black(SLAC National Accelerator Laboratory), K. M. Black(Boston University), R. E. Blair(Argonne National Laboratory), T. Blazek(Comenius University Bratislava), I. Bloch(Deutsches Elektronen-Synchrotron DESY), C. Blocker(Brandeis University), A. Blue(University of Glasgow), U. Blumenschein(Queen Mary University of London), Blunier(Pontificia Universidad Católica de Chile), G. J. Bobbink(National Institute for Subatomic Physics), Victor Bobrovnikov(Novosibirsk State University), S. S. Bocchetta(Lund University), A. Bocci(Duke University), D. Boerner(University of Wuppertal), D. Bogavac(Ludwig-Maximilians-Universität München), А. Г. Богданчиков(Novosibirsk State University), C. Bohm(Stockholm University), V. Boisvert(Royal Holloway University of London), P. Bokan(Uppsala University), T. Bołd(AGH University of Krakow), А. С. Болдырев(Lomonosov Moscow State University), A. E. Bolz(Heidelberg University), M. Bomben(Centre National de la Recherche Scientifique), M. Bóna(Queen Mary University of London), J. S. Bonilla(University of Oregon), M. Boonekamp(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. Borisov(Institute for High Energy Physics), G. Borissov(Lancaster University), J. Bortfeldt(European Organization for Nuclear Research), D. Bortoletto(University of Oxford), V. Bortolotto(University of Rome Tor Vergata), D. Boscherini(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), M. Bosman(Institute for High Energy Physics), J. D. Bossio Sola(Universidad de Buenos Aires), J. Boudreau(University of Pittsburgh), E. V. Bouhova-Thacker(Lancaster University), D. Boumediene(Centre National de la Recherche Scientifique), C. Bourdarios(Université Paris-Sud), S. Boutle(University of Glasgow), A. Boveia(The Ohio State University), J. Boyd(European Organization for Nuclear Research), I. R. Boyko(Joint Institute for Nuclear Research), A. J. Bozson(Royal Holloway University of London), J. Bracinik(University of Birmingham), N. Brahimi(Centre National de la Recherche Scientifique), A. Brandt(The University of Texas at Arlington), O. Brandt(University of Wuppertal), O. Brandt(Heidelberg University), F. Braren(Deutsches Elektronen-Synchrotron DESY), U. Bratzler(Tokyo Metropolitan University), B. Brau(University of Massachusetts Amherst), J. E. Brau(University of Oregon), W. D. Breaden Madden(University of Glasgow), K. Brendlinger(Deutsches Elektronen-Synchrotron DESY), A. J. Brennan(The University of Melbourne), L. Brenner(Deutsches Elektronen-Synchrotron DESY), R. Brenner(Uppsala University), S. Bressler(Weizmann Institute of Science), B. Brickwedde(Johannes Gutenberg University Mainz), D. L. Briglin(University of Birmingham), D. Britton(University of Glasgow), D. Britzger(Heidelberg University), I. Brock(University of Bonn), R. Brock(Michigan State University), G. Brooijmans(Columbia University), T. Brooks(Royal Holloway University of London), W. K. Brooks(Federico Santa María Technical University), E. Brost(Northern Illinois University), J. H Broughton(University of Birmingham), P. A. Bruckman de Renstrom(Institute of Nuclear Physics, Polish Academy of Sciences), D. Bruncko(Slovak Academy of Sciences), A. Bruni(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), G. Bruni(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), L. S. Bruni(National Institute for Subatomic Physics), S. Bruno(University of Rome Tor Vergata), B. H. Brunt(University of Cambridge), M. Bruschi(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), N. Bruscino(University of Pittsburgh), P. Bryant(Fermi National Accelerator Laboratory), L. Bryngemark(Deutsches Elektronen-Synchrotron DESY), T. Buanes(University of Bergen), Q. Buat(European Organization for Nuclear Research), P. Buchholz(University of Siegen), A. G. Buckley(University of Glasgow), I. A. Budagov(Joint Institute for Nuclear Research), F. Buehrer(University of Freiburg), M. K. Bugge(University of Oslo), O. Bulekov(National Research Nuclear University MEPhI), D. Bullock(The University of Texas at Arlington), T. J. Burch(Northern Illinois University), S. Burdin(University of Liverpool), C. D. Burgard(National Institute for Subatomic Physics), A. M. Burger(Centre National de la Recherche Scientifique), B. Burghgrave(Northern Illinois University), K. Burka(Institute of Nuclear Physics, Polish Academy of Sciences), S. Bürke(Rutherford Appleton Laboratory), I. Burmeister(TU Dortmund University), J. T. P. Burr(University of Oxford), D. Büscher(University of Freiburg), V. Büscher(Johannes Gutenberg University Mainz), E. Buschmann(University of Göttingen), P. Bussey(University of Glasgow), J. M. Butler(Boston University), C. M. Buttar(University of Glasgow), J. M. Butterworth(University College London), P. Butti(European Organization for Nuclear Research), W. Buttinger(European Organization for Nuclear Research), A. Buzatu(Institute of Physics, Academia Sinica), А. Р. Бузыкаев(Novosibirsk State University), G. Cabras(Osservatorio astronomico di Bologna), S. Cabrera Urbán(Universitat de València), D. Caforio(Czech Technical University in Prague), H. Cai(University of Illinois Urbana-Champaign), V. M. M. Cairo(University at Albany, State University of New York), Ö. Çakır(Ankara University), N. Calace(University of Geneva), P. Calafiura(Lawrence Berkeley National Laboratory), A. Calandri(Centre National de la Recherche Scientifique), G. Calderini(Centre National de la Recherche Scientifique), P. Calfayan(Indiana University Bloomington), G. Callea(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), L. P. Calôba(Universidade Federal do Rio de Janeiro), S. Calvente Lopez(Universitat de València), D. Calvet(Centre National de la Recherche Scientifique), S. Calvet(Centre National de la Recherche Scientifique), T. P. Calvet(Stony Brook University), M. Calvetti(University of Pisa), R. Camacho Toro(Centre National de la Recherche Scientifique), S. Camarda(European Organization for Nuclear Research), P. Camarri(University of Rome Tor Vergata), D. Cameron(University of Oslo), R. Caminal Armadans(University of Massachusetts Amherst), C. Camincher(European Organization for Nuclear Research), S. Campana(European Organization for Nuclear Research), M. Campanelli(University College London), A. Camplani(University of Milan), A. Campoverde(University of Siegen), V. Canale(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), M. Cano Bret(Shanghai Jiao Tong University), J. Cantero(Oklahoma State University), T. Cao(Tel Aviv University), Y. Cao(University of Illinois Urbana-Champaign), M. D. M. Capeans Garrido(European Organization for Nuclear Research), I. Caprini(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), M. Caprini(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), M. Capua(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), R. M. Carbone(Columbia University), R. Cardarelli(Istituto Nazionale di Fisica Nucleare, Roma Tor Vergata), F. Cardillo(University of Freiburg), T. Carli(Charles University), T. Carli(European Organization for Nuclear Research), G. Carlino(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), B. T. Carlson(University of Pittsburgh), L. Carminati(University of Milan), R. M. D. Carney(Stockholm University), S. Caron(Radboud University Nijmegen), E. Carquín(Federico Santa María Technical University), S. Carrá(University of Milan), G. D. Carrillo-Montoya(European Organization for Nuclear Research), D. Casadei(University of Johannesburg), M. P. Casado(Institute for High Energy Physics), A. F. Casha(University of Toronto), M. Casolino(Institute for High Energy Physics), D. W. Casper(University of California, Irvine), R. Castelijn(National Institute for Subatomic Physics), V. Castillo Gimenez(Universitat de València), N. F. Castro(LIP - Laboratory of Instrumentation and Experimental Particle Physics), A. Catinaccio(European Organization for Nuclear Research), J. R. Catmore(University of Oslo), A. Cattai(European Organization for Nuclear Research), J. Caudron(University of Bonn), V. Cavaliere(Brookhaven National Laboratory), E. Cavallaro(Institute for High Energy Physics), D. Cavalli(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), M. Cavalli-Sforza(Institute for High Energy Physics), V. Cavasinni(University of Pisa), E. Celebi(Istanbul Bilgi University), F. Ceradini(Roma Tre University), L. Cerdá Alberich(Universitat de València), A. S. Cerqueira(Universidade Federal de Juiz de Fora), A. Cerri(University of Sussex), L. Cerrito(University of Rome Tor Vergata), F. Cerutti(Lawrence Berkeley National Laboratory), A. Cervelli(Osservatorio astronomico di Bologna), S. A. Çetin(Istanbul Bilgi University), A. Chafaq(University of Hassan II Casablanca), D. Chakraborty(Northern Illinois University), S. K. Chan(Harvard University), W. S. Chan(National Institute for Subatomic Physics), Y. L. Chan(Chinese University of Hong Kong), P. Chang(University of Illinois Urbana-Champaign), J. D. Chapman(University of Cambridge), D. G. Charlton(University of Birmingham), C. C. Chau(Carleton University), C. A. Chavez Barajas(University of Sussex), S. Che(The Ohio State University), A. Chegwidden(Michigan State University), S. Chekanov(Argonne National Laboratory), S. V. Chekulaev(TRIUMF), G. A. Chelkov(Joint Institute for Nuclear Research), M. A. Chelstowska(European Organization for Nuclear Research), C. Chen(University of Science and Technology of China), C. Chen(University of Science and Technology of China), H. Chen(Brookhaven National Laboratory), J. Chen(University of Science and Technology of China), J. Chen(University of Science and Technology of China), S. Chen(University of Pennsylvania), S. J. Chen(University of Pennsylvania), X. Chen(Tsinghua University), Y. Chen(Deutsches Elektronen-Synchrotron DESY), Y-H. Chen(Deutsches Elektronen-Synchrotron DESY), H. C. Cheng(University of Michigan), H. J. Cheng(University of Michigan), A. Cheplakov(Joint Institute for Nuclear Research), E. Cheremushkina(Institute for High Energy Physics), R. Cherkaoui El Moursli(Mohammed V University), E. Cheu(University of Arizona), Kingman Cheung(National Tsing Hua University), L. Chevalier(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), V. Chiarella(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), G. Chiarelli(Istituto Nazionale di Fisica Nucleare, Sezione di Pisa), G. Chiodini(Istituto Nazionale di Fisica Nucleare, Sezione di Lecce), A. S. Chisholm(European Organization for Nuclear Research), A. Chitan(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), I. Chiu(The University of Tokyo), Y. H. Chiu(University of Victoria), M. V. Chizhov(Joint Institute for Nuclear Research), K. Choi(Indiana University Bloomington), A. R. Chomont(Université Paris-Sud), S. Chouridou(Aristotle University of Thessaloniki), Y. S. Chow(National Institute for Subatomic Physics), V. Christodoulou(University College London), M. C. Chu(Chinese University of Hong Kong), J. Chudoba(Czech Academy of Sciences), A. J. Chuinard(McGill University), J. J. Chwastowski(Institute of Nuclear Physics, Polish Academy of Sciences), L. Chytka(Palacký University Olomouc), D. Cinca(TU Dortmund University), V. Cindro(University of Ljubljana), I. A. Cioară(University of Bonn), A. Ciocio(Lawrence Berkeley National Laboratory), F. Cirotto(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), Z. H. Citron(Weizmann Institute of Science), M. Citterio(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), A. Clark(University of Geneva), M. R. Clark(Columbia University), P. J. Clark(University of Edinburgh), C. Clement(Stockholm University), Y. Coadou(Centre National de la Recherche Scientifique), M. Cobal(University of Udine), A. Coccaro(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), J. Cochran(Iowa State University), A. E. C. Coimbra(Weizmann Institute of Science), L. Colasurdo(Radboud University Nijmegen), B. Cole(Columbia University), A. P. Colijn(National Institute for Subatomic Physics), J. Collot(Institut polytechnique de Grenoble), P. Conde Muíño(University of Lisbon), E. Coniavitis(University of Freiburg), S. H. Connell(University of Johannesburg), I. A. Connelly(University of Manchester), S. Constantinescu(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), F. Conventi(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), A. M. Cooper-Sarkar(University of Oxford), F. Cormier(University of British Columbia), K. Cormier(University of Toronto), M. Corradi(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), E. E. Corrigan(Lund University), F. Corriveau(McGill University), A. Cortes-Gonzalez(European Organization for Nuclear Research), M. Costa(Universitat de València), D. Costanzo(University of Sheffield), G. Cottin(University of Cambridge), G. Cowan(Royal Holloway University of London), B. E. Cox(University of Manchester), J. Crane(University of Manchester), K. Cranmer(New York University), S. J. Crawley(University of Glasgow), R. A. Creager(University of Pennsylvania), G. Cree(Carleton University), S. Crépé-Renaudin(Institut polytechnique de Grenoble), F. Crescioli(Centre National de la Recherche Scientifique), M. Cristinziani(University of Bonn), V. Croft(New York University), G. Crosetti(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), A. Cueto(Universidad Autónoma de Madrid), T. Cuhadar Donszelmann(University of Sheffield), A. R. Cukierman(SLAC National Accelerator Laboratory), M. Curatolo(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), J. Cúth(Johannes Gutenberg University Mainz), S. Czekierda(Institute of Nuclear Physics, Polish Academy of Sciences), P. Czodrowski(European Organization for Nuclear Research), M. J. Da Cunha Sargedas De Sousa(University of Lisbon), C. Da Vià(University of Manchester), W. Dąbrowski(AGH University of Krakow), T. Dado(Comenius University Bratislava), S. Dahbi(Mohammed V University), T. Dai(University of Michigan), F. Dallaire(Institute of Particle Physics), C. Dallapiccola(University of Massachusetts Amherst), M. Dam(University of Copenhagen), G. D’amen(Osservatorio astronomico di Bologna), J. R. Dandoy(University of Pennsylvania), M. F. Daneri(Universidad de Buenos Aires), N. P. Dang(University of Wisconsin–Madison), N.D Dann(University of Manchester), M. Danninger(University of British Columbia), V. Dao(European Organization for Nuclear Research), G. Darbo(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), S. Darmora(The University of Texas at Arlington), O. Dartsi(Centre National de la Recherche Scientifique), A. Dattagupta(University of Oregon), T. Daubney(Deutsches Elektronen-Synchrotron DESY), S. D’Auria(University of Glasgow), W. Davey(University of Bonn), C. David(Deutsches Elektronen-Synchrotron DESY), T. Davídek(Charles University), D. R. Davis(Duke University), E. Dawe(The University of Melbourne), I. Dawson(University of Sheffield), K. De(The University of Texas at Arlington), R. de Asmundis(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), A. Benedetti(University of Oklahoma), S. De Castro(Osservatorio astronomico di Bologna), S. De Cecco(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), N. De Groot(Radboud University Nijmegen), S. J. de Jong(National Institute for Subatomic Physics), H. De la Torre(Michigan State University), F. De Lorenzi(Iowa State University), A. De Maria(University of Göttingen), D. De Pedis(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), A. De Salvo(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), U. De Sanctis(University of Rome Tor Vergata), A. De Santo(University of Sussex), K. De Vasconcelos Corga(Centre National de la Recherche Scientifique), J. B. De Vivie De Regie(Université Paris-Sud), C. Debenedetti(University of California, Santa Cruz), D.V. Dedovich(Joint Institute for Nuclear Research), N. Dehghanian(University of Alberta), M. Del Gaudio(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), J. Del Peso(Universidad Autónoma de Madrid), D. Delgove(Université Paris-Sud), F. Déliot(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), C. M. Delitzsch(University of Arizona), M. Della Pietra(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), D. della Volpe(University of Geneva), A. Dell’Acqua(European Organization for Nuclear Research), L. Dell’Asta(Boston University), M. Delmastro(Centre National de la Recherche Scientifique), C. Delporte(Université Paris-Sud), P. A. Delsart(Institut polytechnique de Grenoble), D. A. DeMarco(University of Toronto), S. Demers(Yale University), M. Demichev(Joint Institute for Nuclear Research), S.P. Denisov(Institute for High Energy Physics), D. Denysiuk(National Institute for Subatomic Physics), L. D’Eramo(Centre National de la Recherche Scientifique), D. Derendarz(Institute of Nuclear Physics, Polish Academy of Sciences), J. E. Derkaoui(Mohamed I University), F. Derue(Centre National de la Recherche Scientifique), P. Dervan(University of Liverpool), K. Desch(University of Bonn), C. Deterre(Deutsches Elektronen-Synchrotron DESY), K. Dette(University of Toronto), M. R. Devesa(Universidad de Buenos Aires), P. O. Deviveiros(European Organization for Nuclear Research), A. Dewhurst(Rutherford Appleton Laboratory), S. Dhaliwal(Brandeis University), F. A. Di Bello(University of Geneva), A. Di Ciaccio(University of Rome Tor Vergata), L. Di Ciaccio(Centre National de la Recherche Scientifique), W. K. Di Clemente(University of Pennsylvania), C. Di Donato(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), A. Di Girolamo(European Organization for Nuclear Research), B. Di Micco(Roma Tre University), R. Di Nardo(European Organization for Nuclear Research), K. F. Di Petrillo(Harvard University), A. Di Simone(University of Freiburg), R. Di Sipio(University of Toronto), D. Di Valentino(Carleton University), C. Diaconu(Centre National de la Recherche Scientifique), M. Diamond(University of Toronto), F. A. Dias(University of Copenhagen), T. Dias Do Vale(LIP - Laboratory of Instrumentation and Experimental Particle Physics), M. A. Diaz(Pontificia Universidad Católica de Chile), J. Dickinson(Lawrence Berkeley National Laboratory), E. B. Diehl(University of Michigan), J. Dietrich(Humboldt-Universität zu Berlin), S. Díez Cornell(Deutsches Elektronen-Synchrotron DESY), A. Dimitrievska(Lawrence Berkeley National Laboratory), J. Dingfelder(University of Bonn), F. Dittus(European Organization for Nuclear Research), F. Djama(Centre National de la Recherche Scientifique), T. Djobava(Tbilisi State University), J. I. Djuvsland(Heidelberg University), M. A. B. do Vale(Federal University of São João del-Rei), M. Dobre(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), D. Dodsworth(Brandeis University), C. Doglioni(Lund University), J. Dolejší(Charles University), Z. Doležal(Charles University), M. Donadelli(Universidade de São Paulo), J. Donini(Centre National de la Recherche Scientifique), A. D’onofrio(Queen Mary University of London), M. D’Onofrio(University of Liverpool), J. Dopke(Rutherford Appleton Laboratory), A. Doria(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), M. T. Dova(Consejo Nacional de Investigaciones Científicas y Técnicas), A. T. Doyle(University of Glasgow), E. Drechsler(University of Göttingen), E. Dreyer(Simon Fraser University), T. Dreyer(University of Göttingen), M. Dris(National Technical University of Athens), Y. Du(Shandong University), J. Duarte-Campderros(Tel Aviv University), F. Dubinin(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), A. Dubreuil(University of Geneva), E. Duchovni(Weizmann Institute of Science), G. Duckeck(Ludwig-Maximilians-Universität München), A. Ducourthial(Centre National de la Recherche Scientifique), O. A. Ducu(Institute of Particle Physics), D. Duda(National Institute for Subatomic Physics), A. Dudarev(European Organization for Nuclear Research), A. C. Dudder(Johannes Gutenberg University Mainz), E. M. Duffield(Lawrence Berkeley National Laboratory), L. Duflot(Université Paris-Sud), M. Dührssen(European Organization for Nuclear Research), C. Dülsen(University of Wuppertal), M. Dumančić(Weizmann Institute of Science), A. E. Dumitriu(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), A. K. Duncan(University of Glasgow), M. Dunford(Heidelberg University), A. Duperrin(Centre National de la Recherche Scientifique), H. Duran Yıldız(Ankara University), M. Düren(Justus-Liebig-Universität Gießen), A. Durglishvili(Tbilisi State University), D. Duschinger(Technische Universität Dresden), B. Dutta(Deutsches Elektronen-Synchrotron DESY), Damir Duvnjak(The University of Adelaide), M. Dyndał(Deutsches Elektronen-Synchrotron DESY), B. S. Dziedzic(Institute of Nuclear Physics, Polish Academy of Sciences), C. Eckardt(Deutsches Elektronen-Synchrotron DESY), K. M. Ecker(Max Planck Institute for Physics), R. C. Edgar(University of Michigan), T. Eifert(European Organization for Nuclear Research), G. Eigen(University of Bergen), K. Einsweiler(Lawrence Berkeley National Laboratory), T. Ekelof(Uppsala University), M. El Kacimi(Cadi Ayyad University), R. El Kosseifi(Centre National de la Recherche Scientifique), V. Ellajosyula(Centre National de la Recherche Scientifique), M. Ellert(Uppsala University), F. Ellinghaus(University of Wuppertal), A. A. Elliot(University of Victoria), N. Ellis(European Organization for Nuclear Research), J. Elmsheuser(Brookhaven National Laboratory), M. Elsing(European Organization for Nuclear Research), D. Emeliyanov(Rutherford Appleton Laboratory), Y. Enari(The University of Tokyo), J. S. Ennis(University of Warwick), M. B. Epland(Duke University), J. Erdmann(TU Dortmund University), A. Ereditato(University of Bern), S. Errede(University of Illinois Urbana-Champaign), M. Escalier(Université Paris-Sud), C. Escobar(Universitat de València), B. Esposito(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), O. Estrada Pastor(Universitat de València), A. I. Etienvre(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), E. Etzion(Tel Aviv University), H. Evans(Indiana University Bloomington), A. Ezhilov(Kurchatov Institute), M. Ezzi(Mohammed V University), F. Fabbri(Osservatorio astronomico di Bologna), L. Fabbri(Osservatorio astronomico di Bologna), V. Fabiani(Radboud University Nijmegen), G. Facini(University College London), R. M. Faisca Rodrigues Pereira(Universidade Federal do Rio de Janeiro), R.M. Fakhrutdinov(Institute for High Energy Physics), S. Falciano(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), P. J. Falke(Centre National de la Recherche Scientifique), S. Falke(Centre National de la Recherche Scientifique), J. Faltova(Charles University), Y. Fang(Chinese Academy of Sciences), M. Fanti(University of Milan), A. Farbin(The University of Texas at Arlington), A. Farilla(Istituto Nazionale di Fisica Nucleare, Sezione di Roma Tre), E. M. Farina(University of Pavia), T. Farooque(Michigan State University), S. Farrell(Lawrence Berkeley National Laboratory), S. M. Farrington(University of Warwick), P. Farthouat(European Organization for Nuclear Research), F. Fassi(Mohammed V University), P. Fassnacht(European Organization for Nuclear Research), D. Fassouliotis(National and Kapodistrian University of Athens), M. Faucci Giannelli(University of Edinburgh), A. Favareto(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), W. J. Fawcett(University of Geneva), L. Fayard(Université Paris-Sud), O. L. Fedin(Kurchatov Institute), W. Fedorko(University of British Columbia), M. Feickert(Southern Methodist University), S. Feigl(University of Oslo), L. Feligioni(Centre National de la Recherche Scientifique), C. Feng(Shandong University), E. J. Feng(European Organization for Nuclear Research), M. Feng(Duke University), M. J. Fenton(University of Glasgow), A. B. Fenyuk(Institute for High Energy Physics), L. Feremenga(The University of Texas at Arlington), J. Ferrando(Deutsches Elektronen-Synchrotron DESY), A. Ferrari(Uppsala University), P. Ferrari(National Institute for Subatomic Physics), R. Ferrari(Istituto Nazionale di Fisica Nucleare, Sezione di Pavia), D. E. Ferreira de Lima(Heidelberg University), A. Ferrer(Universitat de València), D. Ferrère(University of Geneva), C. Ferretti(University of Michigan), F. Fiedler(Johannes Gutenberg University Mainz), A. Filipčić(University of Ljubljana), F. Filthaut(Radboud University Nijmegen), M. Fincke-Keeler(University of Victoria), K. D. Finelli(Boston University), M. C. N. Fiolhais(LIP - Laboratory of Instrumentation and Experimental Particle Physics), L. Fiorini(Universitat de València), C. Fischer(Institute for High Energy Physics), W. C. Fisher(Michigan State University), N. Flaschel(Deutsches Elektronen-Synchrotron DESY), I. Fleck(University of Siegen), P. Fleischmann(University of Michigan), R. R. M. Fletcher(University of Pennsylvania), T. Flick(University of Wuppertal), B. M. Flierl(Ludwig-Maximilians-Universität München), L. Flores(University of Pennsylvania), L. R. Flores Castillo(Chinese University of Hong Kong), N. Fomin(University of Bergen), G. T. Forcolin(University of Manchester), A. Formica(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), F. A. Förster(Institute for High Energy Physics), A. Forti(University of Manchester), A. G. Foster(University of Birmingham), D. Fournier(Université Paris-Sud), H. Fox(Lancaster University), S. Fracchia(University of Sheffield), P. Francavilla(University of Pisa), M. Franchini(Osservatorio astronomico di Bologna), S. Franchino(Heidelberg University), D. Francis(European Organization for Nuclear Research), L. Franconi(University of Oslo), M. Franklin(Harvard University), M. Frate(University of California, Irvine), M. Fraternali(University of Pavia), D. Freeborn(University College London), S. M. Fressard-Batraneanu(European Organization for Nuclear Research), B. Freund(Institute of Particle Physics), W. S. Freund(Universidade Federal do Rio de Janeiro), H. Oide(European Organization for Nuclear Research), J.A. Frost(University of Oxford), C. Fukunaga(Tokyo Metropolitan University), T. Fusayasu(Nagasaki Institute of Applied Science), J. Fuster(Universitat de València), O. Gabizon(Technion – Israel Institute of Technology), A. Gabrielli(Lawrence Berkeley National Laboratory), A. Gabrielli(Lawrence Berkeley National Laboratory), G. P. Gach(AGH University of Krakow), S. Gadatsch(University of Geneva), P. Gadow(Max Planck Institute for Physics), G. Gagliardi(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), L. G. Gagnon(Institute of Particle Physics), C. Galea(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), B. Galhardo(LIP - Laboratory of Instrumentation and Experimental Particle Physics), E. J. Gallas(University of Oxford), B. J. Gallop(Rutherford Appleton Laboratory), P. Gallus(Czech Technical University in Prague), G. Galster(University of Copenhagen), R. Gamboa Goni(Queen Mary University of London), K. K. Gan(The Ohio State University), S. Ganguly(Weizmann Institute of Science), Y. Gao(University of Liverpool), Y. S. Gao(University of Liverpool), C. Garcı́a(Universitat de València), J. E. García Navarro(Universitat de València), J. A. García Pascual(Chinese Academy of Sciences), M. Garcia-Sciveres(Lawrence Berkeley National Laboratory), R. W. Gardner(Fermi National Accelerator Laboratory), N. Garelli(SLAC National Accelerator Laboratory), V. Garonne(University of Oslo), K. Gasnikova(Deutsches Elektronen-Synchrotron DESY), A. Gaudiello(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), G. Gaudio(Istituto Nazionale di Fisica Nucleare, Sezione di Pavia), I. L. Gavrilenko(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), A. Gavrilyuk(Institute for Theoretical and Experimental Physics), C. Gay(University of British Columbia), G. Gaycken(University of Bonn), E. N. Gazis(National Technical University of Athens), C. N. P. Gee(Rutherford Appleton Laboratory), J. Geisen(University of Göttingen), M. Geisen(Johannes Gutenberg University Mainz), M. P. Geisler(Heidelberg University), K. Gellerstedt(Stockholm University), C. Gemme(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), M. H. Genest(Institut polytechnique de Grenoble), C. Geng(University of Michigan), S. Gentile(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), C. Gentsos(Aristotle University of Thessaloniki), S. George(Royal Holloway University of London), D. Gerbaudo(Institute for High Energy Physics), G. Geßner(TU Dortmund University), S. Ghasemi(University of Siegen), M. Ghneimat(University of Bonn), B. Giacobbe(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), S. Giagu(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), N. Giangiacomi(Osservatorio astronomico di Bologna), P. Giannetti(Istituto Nazionale di Fisica Nucleare, Sezione di Pisa), S. M. Gibson(Royal Holloway University of London), M. Gignac(University of California, Santa Cruz), D. Gillberg(Carleton University), G. Gilles(University of Wuppertal), D. M. Gingrich(University of Alberta), M. P. Giordani(University of Udine), F. M. Giorgi(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), P. F. Giraud(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), P. Giromini(Harvard University), G. Giugliarelli(University of Udine), D. Giugni(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), F. Giuli(University of Oxford), M. Giulini(Heidelberg University), S. Gkaitatzis(Aristotle University of Thessaloniki), I. Gkialas(National and Kapodistrian University of Athens), E. L. Gkougkousis(Institute for High Energy Physics), P. Gkountoumis(National Technical University of Athens), L. K. Gladilin(Lomonosov Moscow State University), C. Glasman(Universidad Autónoma de Madrid), J. Glatzer(Institute for High Energy Physics), P. C. F. Glaysher(Deutsches Elektronen-Synchrotron DESY), A. Glazov(Deutsches Elektronen-Synchrotron DESY), M. Goblirsch-Kolb(Brandeis University), J. Godlewski(Institute of Nuclear Physics, Polish Academy of Sciences), S. Goldfarb(The University of Melbourne), T. Golling(University of Geneva), D. Golubkov(Institute for High Energy Physics), A. Gomes(University of Lisbon), R. Goncalves Gama(Universidade Federal de Juiz de Fora), R. Gonçalo(LIP - Laboratory of Instrumentation and Experimental Particle Physics), G. Gonella(University of Freiburg), L. Gonella(University of Birmingham), A. Gongadze(Joint Institute for Nuclear Research), F. Gonnella(University of Birmingham), J. L. Gonski(Harvard University), S. González de la Hoz(Universitat de València), S. González-Sevilla(University of Geneva), L. Goossens(European Organization for Nuclear Research), P. A. Gorbounov(Institute for Theoretical and Experimental Physics), H. A. Gordon(Brookhaven National Laboratory), E. Gorini(European Organization for Nuclear Research), E. Gorini(University of Salento), A. Gorišek(University of Ljubljana), A. T. Goshaw(Duke University), C. Gössling(TU Dortmund University), M. I. Gostkin(Joint Institute for Nuclear Research), C. A. Gottardo(University of Bonn), C. R. Goudet(Université Paris-Sud), D. Goujdami(Cadi Ayyad University), A. G. Goussiou(University of Washington), N. Govender(University of Johannesburg), C. Goy(Centre National de la Recherche Scientifique), E. Gozani(Technion – Israel Institute of Technology), I. Grabowska-Bołd(AGH University of Krakow), P. O. J. Gradin(Uppsala University), E. C. Graham(University of Liverpool), J. Gramling(University of California, Irvine), E. Gramstad(University of Oslo), S. Grancagnolo(Humboldt-Universität zu Berlin), V. Gratchev(Kurchatov Institute), P. M. Gravila(West University of Timişoara), C. Gray(University of Glasgow), H. M. Gray(Lawrence Berkeley National Laboratory), Z. D. Greenwood(Louisiana Tech University), C. Grefe(University of Bonn), K. Gregersen(University College London), I. M. Gregor(Deutsches Elektronen-Synchrotron DESY), P. Grenier(SLAC National Accelerator Laboratory), K. Grevtsov(Deutsches Elektronen-Synchrotron DESY), J. Griffiths(The University of Texas at Arlington), A. A. Grillo(University of California, Santa Cruz), K. Grimm(SLAC National Accelerator Laboratory), S. Grinstein(Institute for High Energy Physics), Ph. Gris(Centre National de la Recherche Scientifique), J.-F. Grivaz(Université Paris-Sud), S. Groh(Johannes Gutenberg University Mainz), E. Gross(Weizmann Institute of Science), J. Große-Knetter(University of Göttingen), G. C. Grossi(Louisiana Tech University), Z. J. Grout(University College London), C. Grud(University of Michigan), A. Grummer(University of New Mexico), L. Guan(University of Michigan), W. Guan(University of Wisconsin–Madison), J. Guenther(European Organization for Nuclear Research), A. Guerguichon(Université Paris-Sud), F. Guescini(TRIUMF), D. Guest(University of California, Irvine), R. Gugel(University of Freiburg), B. Gui(The Ohio State University), T. Guillemin(Centre National de la Recherche Scientifique), S. Guindon(European Organization for Nuclear Research), U. Gul(University of Glasgow), C. Gumpert(European Organization for Nuclear Research), Jun Guo(Shanghai Jiao Tong University), W. Guo(University of Michigan), Y. Guo(University of Science and Technology of China), Z. J. Guo(Centre National de la Recherche Scientifique), R. Gupta(Southern Methodist University), S. Gurbuz(Boğaziçi University), G. Gustavino(University of Oklahoma), B. J. Gutelman(Technion – Israel Institute of Technology), P. Gutierrez(University of Oklahoma), C. Gütschow(University College London), C. Guyot(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), M. P. Guzik(AGH University of Krakow), C. Gwenlan(University of Oxford), C. B. Gwilliam(University of Liverpool), A. Haas(New York University), C. Haber(Lawrence Berkeley National Laboratory), H. K. Hadavand(The University of Texas at Arlington), N. Haddad(Mohammed V University), A. Hadef(University of Science and Technology of China), S. Hageböck(University of Bonn), M. Hagihara(University of Tsukuba), H. Hakobyan(A. Alikhanyan National Laboratory), M. Haleem(University of Würzburg), J. Haley(Oklahoma State University), G. Halladjian(Michigan State University), G. D. Hallewell(Centre National de la Recherche Scientifique), K. Hamacher(University of Wuppertal), P. Hamal(Palacký University Olomouc), K. Hamano(University of Victoria), A. Hamilton(University of Cape Town), G. N. Hamity(University of Sheffield), K. Han(University of Science and Technology of China), L. Han(University of Science and Technology of China), S. Han(University of Chinese Academy of Sciences), K. Hanagaki(High Energy Accelerator Research Organization), M. Hance(University of California, Santa Cruz), D. M. Handl(Ludwig-Maximilians-Universität München), B. Haney(University of Pennsylvania), R. Hankache(Centre National de la Recherche Scientifique), P. Hanke(Heidelberg University), E. Hansen(Lund University), J. B. Hansen(University of Copenhagen), J. D. Hansen(University of Copenhagen), M. Hansen(University of Bonn), P. H. Hansen(University of Copenhagen), K. Hara(University of Tsukuba), A. S. Hard(University of Wisconsin–Madison), T. Harenberg(University of Wuppertal), S. Harkusha(National Academy of Sciences of Belarus), P. F. Harrison(University of Warwick), N. M. Hartmann(Ludwig-Maximilians-Universität München), Y. Hasegawa(Shinshu University), A. Hasib(University of Edinburgh), S. Hassani(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), S. Haug(University of Bern), R. Hauser(Michigan State University), L. Hauswald(Technische Universität Dresden), L.B. Havener(Columbia University), M. Havranek(Czech Technical University in Prague), C. M. Hawkes(University of Birmingham), R. J. Hawkings(European Organization for Nuclear Research), D. Hayden(Michigan State University), C. Hayes(Stony Brook University), C. P. Hays(University of Oxford), J. Hays(Queen Mary University of London), H. S. Hayward(University of Liverpool), S. J. Haywood(Rutherford Appleton Laboratory), M. P. Heath(University of Edinburgh), V. Hedberg(Lund University), L. Heelan(The University of Texas at Arlington), S. Heer(University of Bonn), K. K. Heidegger(University of Freiburg), J. Heilman(Carleton University), S. Heim(Deutsches Elektronen-Synchrotron DESY), S. Heim(Lawrence Berkeley National Laboratory), B. Heinemann(Deutsches Elektronen-Synchrotron DESY), J. J. Heinrich(Ludwig-Maximilians-Universität München), L. Heinrich(New York University), C. Heinz(Justus-Liebig-Universität Gießen), J. Hejbal(Czech Academy of Sciences), L. Helary(European Organization for Nuclear Research), A. Held(University of British Columbia), S. Hellesund(University of Oslo), S. Hellman(Stockholm University), C. Helsens(European Organization for Nuclear Research), R. C. W. Henderson(Lancaster University), Y. Heng(University of Wisconsin–Madison), S. Henkelmann(University of British Columbia), A. M. Henriques Correia(European Organization for Nuclear Research), G. H. Herbert(Humboldt-Universität zu Berlin), H. Herde(Brandeis University), V. Herget(University of Würzburg), Y. Hernández Jiménez(University of the Witwatersrand), H. Herr(Johannes Gutenberg University Mainz), G. Herten(University of Freiburg), R. Hertenberger(Ludwig-Maximilians-Universität München), L. Hervás(European Organization for Nuclear Research), T. C. Herwig(University of Pennsylvania), G. G. Hesketh(University College London), N. P. Hessey(TRIUMF), J. W. Hetherly(Southern Methodist University), S. Higashino(High Energy Accelerator Research Organization), E. Higón-Rodriguez(Universitat de València), K. Hildebrand(Fermi National Accelerator Laboratory), E. Hill(University of Victoria), J. C. Hill(University of Cambridge), K. H. Hiller(Deutsches Elektronen-Synchrotron DESY), S. J. Hillier(University of Birmingham), M. Hils(Technische Universität Dresden), I. Hinchliffe(Lawrence Berkeley National Laboratory), M. Hirose(The University of Osaka), D. Hirschbuehl(University of Wuppertal), B. Hiti(University of Ljubljana), O. Hladik(Czech Academy of Sciences), D. R. Hlaluku(University of the Witwatersrand), X. Hoad(University of Edinburgh), J. Hobbs(Stony Brook University), N. Hod(TRIUMF), M. C. Hodgkinson(University of Sheffield), A. Hoecker(European Organization for Nuclear Research), M. R. Hoeferkamp(University of New Mexico), F. Hoenig(Ludwig-Maximilians-Universität München), D. Höhn(University of Bonn), D. Hohov(Université Paris-Sud), T. R. Holmes(Fermi National Accelerator Laboratory), M. Holzbock(Ludwig-Maximilians-Universität München), M. Homann(TU Dortmund University), S. Honda(University of Tsukuba), T. Honda(High Energy Accelerator Research Organization), T. M. Hong(University of Pittsburgh), A. Hönle(Max Planck Institute for Physics), B. H. Hooberman(University of Illinois Urbana-Champaign), W. H. Hopkins(University of Oregon), Y. Horii(Obayashi (Japan)), P. Horn(Technische Universität Dresden), A. J. Horton(Simon Fraser University), L. A. Horyn(Fermi National Accelerator Laboratory), J-Y. Hostachy(Institut polytechnique de Grenoble), A. Hostiuc(University of Washington), S. Hou(Institute of Physics, Academia Sinica), A. Hoummada(University of Hassan II Casablanca), J. Howarth(University of Manchester), J. Hoya(Consejo Nacional de Investigaciones Científicas y Técnicas), M. Hrabovský(Palacký University Olomouc), J. Hrdinka(European Organization for Nuclear Research), I. Hristova(Humboldt-Universität zu Berlin), J. Hrivnac(Université Paris-Sud), A. Hrynevich(Belarusian State University), T. Hryn’ova(Centre National de la Recherche Scientifique), P. J. Hsu(National Tsing Hua University), S.‐C. Hsu(University of Washington), Q. Hu(Brookhaven National Laboratory), S. Hu(Shanghai Jiao Tong University), Y. Huang(Chinese Academy of Sciences), Z. Hubáček(Czech Technical University in Prague), F. Hubaut(Centre National de la Recherche Scientifique), M. Huebner(University of Bonn), F. Huegging(University of Bonn), T. B. Huffman(University of Oxford), E. W. Hughes(Columbia University), M. Huhtinen(European Organization for Nuclear Research), R. F. H. Hunter(Carleton University), P. Huo(Stony Brook University), A. M. Hupe(Carleton University), N. Huseynov(Joint Institute for Nuclear Research), J. Huston(Michigan State University), J. Huth(Harvard University), R. Hyneman(University of Michigan), G. Iacobucci(University of Geneva), G. Iakovidis(Brookhaven National Laboratory), I. Ibragimov(University of Siegen), L. Iconomidou-Fayard(Université Paris-Sud), Z. Idrissi(Mohammed V University), P. Iengo(European Organization for Nuclear Research), R. Ignazzi(University of Copenhagen), O. Igonkina(National Institute for Subatomic Physics), R. Iguchi(The University of Tokyo), T. Iizawa(Waseda University), Y. Ikegami(High Energy Accelerator Research Organization), M. Ikeno(High Energy Accelerator Research Organization), D. Iliadis(Aristotle University of Thessaloniki), N. Ilic(SLAC National Accelerator Laboratory), F. Iltzsche(Technische Universität Dresden), G. Introzzi(University of Pavia), M. Iodice(Istituto Nazionale di Fisica Nucleare, Sezione di Roma Tre), K. Iordanidou(Columbia University), V. Ippolito(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), M. F. Isacson(Uppsala University), N. Ishijima(The University of Osaka), M. Ishino(The University of Tokyo), M. Ishitsuka(Tokyo Institute of Technology), C. Issever(University of Oxford), S. Iştın(Boğaziçi University), F. Ito(University of Tsukuba), J. M. Iturbe Ponce(Chinese University of Hong Kong), R. Iuppa(University of Trento), A. Ivina(Weizmann Institute of Science), H. Iwasaki(High Energy Accelerator Research Organization), J. M. Izen(The University of Texas at Dallas), V. Izzo(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), S. Jabbar(University of Alberta), P. Jacka(Czech Academy of Sciences), P. Jackson(The University of Adelaide), R. M. Jacobs(University of Bonn), V. Jain(University at Albany, State University of New York), G. Jäkel(University of Wuppertal), K. B. Jakobi(Johannes Gutenberg University Mainz), K. Jakobs(University of Freiburg), S. Jakobsen(Universität Innsbruck), T. Jakoubek(Czech Academy of Sciences), D. O. Jamin(Oklahoma State University), D. K. Jana(Louisiana Tech University), R. Jansky(University of Geneva), J. Janssen(University of Bonn), M. Janus(University of Göttingen), P. A. Janus(AGH University of Krakow), G. Jarlskog(Lund University), N. Javadov(Joint Institute for Nuclear Research), T. Javůrek(University of Freiburg), M. Javurkova(University of Freiburg), F. Jeanneau(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), L. Jeanty(Lawrence Berkeley National Laboratory), J. Jejelava(Tbilisi State University), A. Jelinskas(University of Warwick), P. Jenni(University of Freiburg), J. Jeong(Deutsches Elektronen-Synchrotron DESY), C. Jeske(University of Warwick), S. Jézéquel(Centre National de la Recherche Scientifique), H. Ji(University of Wisconsin–Madison), J. Jia(Stony Brook University), H. Jiang(Iowa State University), Y. Jiang(University of Science and Technology of China), Zihao Jiang(SLAC National Accelerator Laboratory), S. Jiggins(University of Freiburg), F. A. Jimenez Morales(Centre National de la Recherche Scientifique), J. Jiménez Peña(Universitat de València), Shubo Jin(Nanjing University), A. Jinaru(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), O. Jinnouchi(Tokyo Institute of Technology), H. Jivan(University of the Witwatersrand), P. Johansson(University of Sheffield), K. A. Johns(University of Arizona), C. A. Johnson(Indiana University Bloomington), W. J. Johnson(University of Washington), K. Jon-And(Stockholm University), R. W. L. Jones(Lancaster University), S. D. Jones(University of Arizona), S. Jones(University of Arizona), T. J. Jones(University of Liverpool), J. Jongmanns(Heidelberg University), P. M. Jorge(University of Lisbon), J. Jovicevic(TRIUMF), X. Ju(University of Wisconsin–Madison), J. J. Junggeburth(Max Planck Institute for Physics), A. Juste Rozas(Institute for High Energy Physics), A. Kaczmarská(Institute of Nuclear Physics, Polish Academy of Sciences), M. Kado(Université Paris-Sud), H. Kagan(The Ohio State University), M. Kagan(SLAC National Accelerator Laboratory), T. Kaji(Waseda University), E. Kajomovitz(Technion – Israel Institute of Technology), C. W. Kalderon(Lund University), A. Kaluza(Johannes Gutenberg University Mainz), S. Kama(Southern Methodist University), A. Kamenshchikov(Institute for High Energy Physics), L. Kanjir(University of Ljubljana), Y. Kano(The University of Tokyo), V. A. Kantserov(National Research Nuclear University MEPhI), J. Kanzaki(High Energy Accelerator Research Organization), B. Kaplan(New York University), L. S. Kaplan(University of Wisconsin–Madison), D. Kar(University of the Witwatersrand), M. J. Kareem(York University), E. Karentzos(National Technical University of Athens), S. N. Karpov(Joint Institute for Nuclear Research), Z. M. Karpova(Joint Institute for Nuclear Research), V. Kartvelishvili(Lancaster University), A. N. Karyukhin(Institute for High Energy Physics), K. Kasahara(University of Tsukuba), L. Kashif(University of Wisconsin–Madison), R. D. Kass(The Ohio State University), A. Kastanas(KTH Royal Institute of Technology), Y. Kataoka(The University of Tokyo), C. Kato(The University of Tokyo), J. Katzy(Deutsches Elektronen-Synchrotron DESY), K. Kawade(Kobe University), K. Kawagoe(Kyushu University), T. Kawamoto(The University of Tokyo), G. Kawamura(University of Göttingen), E. F. Kay(University of Liverpool), V. F. Kazanin(Novosibirsk State University), R. Keeler(University of Victoria), Robert Kehoe(Southern Methodist University), J. S. Keller(Carleton University), E. Kellermann(Lund University), J. J. Kempster(University of Birmingham), J. Kendrick(University of Birmingham), O. Kepka(Czech Academy of Sciences), S. Kersten(University of Wuppertal), B. P. Kerševan(University of Ljubljana), R. A. Keyes(McGill University), M. Khader(University of Illinois Urbana-Champaign), F. Khalil-Zada(Azerbaijan National Academy of Sciences), A. Khanov(Oklahoma State University), A. G. Kharlamov(Novosibirsk State University), T. Kharlamova(Novosibirsk State University), A. Khodinov(National Research Tomsk State University), T. J. Khoo(University of Geneva), V. Khovanskiy(Institute for Theoretical and Experimental Physics), E. Khramov(Joint Institute for Nuclear Research), J. Khubua(Tbilisi State University), S. Kido(Kobe University), M. Kiehn(University of Geneva), C. R. Kilby(Royal Holloway University of London), S. H. Kim(University of Tsukuba), Y. K. Kim(Fermi National Accelerator Laboratory), N. Kimura(University of Udine), O. M. Kind(Humboldt-Universität zu Berlin), B. T. King(University of Liverpool), D. Kirchmeier(Technische Universität Dresden), J. Kirk(Rutherford Appleton Laboratory), A. E. Kiryunin(Max Planck Institute for Physics), T. Kishimoto(The University of Tokyo), D. Kisielewska(AGH University of Krakow), V. Kitali(Deutsches Elektronen-Synchrotron DESY), O. Kivernyk(Centre National de la Recherche Scientifique), E. Kladiva(Slovak Academy of Sciences), T. Klapdor-Kleingrothaus(University of Freiburg), M. Klein(University of Liverpool), M. Klein(University of Liverpool), U. Klein(University of Liverpool), K. Kleinknecht(Johannes Gutenberg University Mainz), P. Klimek(Northern Illinois University), A. Klimentov(Brookhaven National Laboratory), R. Klingenberg(TU Dortmund University), T. Klingl(University of Bonn), T. Klioutchnikova(European Organization for Nuclear Research), F. F. Klitzner(Ludwig-Maximilians-Universität München), P. Kluit(National Institute for Subatomic Physics), S. Kluth(Max Planck Institute for Physics), E. Kneringer(Universität Innsbruck), E. B. F. G. Knoops(Centre National de la Recherche Scientifique), A. Knue(University of Freiburg), A. Kobayashi(The University of Tokyo), D. Kobayashi(Kyushu University), T. Kobayashi(The University of Tokyo), M. Kobel(Technische Universität Dresden), M. Kocian(SLAC National Accelerator Laboratory), P. Kodys(Charles University), T. Koffas(Carleton University), E. Koffeman(National Institute for Subatomic Physics), N. M. Köhler(Max Planck Institute for Physics), T. Koi(SLAC National Accelerator Laboratory), M. Kolb(Heidelberg University), I. Koletsou(Centre National de la Recherche Scientifique), T. Kondo(High Energy Accelerator Research Organization), N. Kondrashova(Shanghai Jiao Tong University), K. Köneke(University of Freiburg), A. C. König(Radboud University Nijmegen), T. Kono(High Energy Accelerator Research Organization), R. Konoplich(New York University), N. Konstantinidis(University College London), B. Kónya(Lund University), R. Kopeliansky(Indiana University Bloomington), S. Koperny(AGH University of Krakow), K. Korcyl(Institute of Nuclear Physics, Polish Academy of Sciences), K. Kordas(Aristotle University of Thessaloniki), A. Korn(University College London), I. Korolkov(Institute for High Energy Physics), E. V. Korolkova(University of Sheffield), O. Kortner(Max Planck Institute for Physics), S. Kortner(Max Planck Institute for Physics), T. Kosek(Charles University), V. V. Kostyukhin(University of Bonn), A. Kotwal(Duke University), A. Koulouris(National Technical University of Athens), A. Kourkoumeli-Charalampidi(University of Pavia), C. Kourkoumelis(National and Kapodistrian University of Athens), E. Kourlitis(University of Sheffield), V. Kouskoura(Brookhaven National Laboratory), A. B. Kowalewska(Institute of Nuclear Physics, Polish Academy of Sciences), R. Kowalewski(University of Victoria), Tadeusz Kowalski(AGH University of Krakow), C. Kozakai(The University of Tokyo), W. Kozanecki(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), А. С. Кожин(Institute for High Energy Physics), V. A. Kramarenko(Lomonosov Moscow State University), G. Kramberger(University of Ljubljana), D. Krasnopevtsev(National Research Nuclear University MEPhI), M. W. Krasny(Centre National de la Recherche Scientifique), A. Krasznahorkay(European Organization for Nuclear Research), D. Krauss(Max Planck Institute for Physics), J. A. Kremer(AGH University of Krakow), J. Kretzschmar(University of Liverpool), P. Krieger(University of Toronto), K. Krizka(Lawrence Berkeley National Laboratory), K. Kroeninger(TU Dortmund University), H. Kroha(Max Planck Institute for Physics), J. Kroll(Czech Academy of Sciences), J. Kroll(Czech Academy of Sciences), J. Krstić(University of Belgrade), U. Kruchonak(Joint Institute for Nuclear Research), H. Krüger(University of Bonn), N. Krumnack(Iowa State University), M. C. Kruse(Duke University), T. Kubota(The University of Melbourne), S. Kuday(Istanbul Aydın University), J. T. Kuechler(University of Wuppertal), S. Kuehn(European Organization for Nuclear Research), A. Kugel(Heidelberg University), F. Kuger(University of Würzburg), T. Kuhl(Deutsches Elektronen-Synchrotron DESY), V. Kukhtin(Joint Institute for Nuclear Research), R. Kukla(Centre National de la Recherche Scientifique), Y. Kulchitsky(National Academy of Sciences of Belarus), S. Kuleshov(Federico Santa María Technical University), Y. P. Kulinich(University of Illinois Urbana-Champaign), M. Kuna(Institut polytechnique de Grenoble), T. Kunigo(Kyoto University), A. Kupčo(Czech Academy of Sciences), T. Kupfer(TU Dortmund University), Oleg Kuprash(Tel Aviv University), H. Kurashige(Kobe University), L. L. Kurchaninov(TRIUMF), Y. A. Kurochkin(National Academy of Sciences of Belarus), M. G. Kurth(University of Chinese Academy of Sciences), E. S. Kuwertz(University of Victoria), M. Kuze(Tokyo Institute of Technology), J. Kvita(Palacký University Olomouc), T. Kwan(University of Victoria), A. La Rosa(Max Planck Institute for Physics), J. L. La Rosa Navarro(Universidade de São Paulo), L. La Rotonda(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), F. La Ruffa(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), C. Lacasta(Universitat de València), F. Lacava(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), J. Lacey(Deutsches Elektronen-Synchrotron DESY), D. P. J. Lack(University of Manchester), H. Lacker(Humboldt-Universität zu Berlin), D. Lacour(Centre National de la Recherche Scientifique), E. Ladygin(Joint Institute for Nuclear Research), R. Lafaye(Centre National de la Recherche Scientifique), B. Laforge(Centre National de la Recherche Scientifique), T. Lagouri(University of the Witwatersrand), S. Lai(University of Göttingen), S. Lammers(Indiana University Bloomington), W. Lampl(University of Arizona), E. Lançon(Brookhaven National Laboratory), U. Landgraf(University of Freiburg), M. P. J. Landon(Queen Mary University of London), M. C. Lanfermann(University of Geneva), V. S. Lang(Deutsches Elektronen-Synchrotron DESY), J. C. Lange(Institute for High Energy Physics), R. J. Langenberg(European Organization for Nuclear Research), A. J. Lankford(University of California, Irvine), F. Lanni(Brookhaven National Laboratory), K. Lantzsch(University of Bonn), A. Lanza(Istituto Nazionale di Fisica Nucleare, Sezione di Pavia), A. Lapertosa(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), S. Laplace(Centre National de la Recherche Scientifique), J. F. Laporte(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), T. Lari(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), F. Lasagni Manghi(Osservatorio astronomico di Bologna), M. Lassnig(European Organization for Nuclear Research), T. S. Lau(Chinese University of Hong Kong), A. Laudrain(Université Paris-Sud), A. T. Law(University of California, Santa Cruz), P. Laycock(University of Liverpool), M. Lazzaroni(University of Milan), B. Le(The University of Melbourne), O. Le Dortz(Centre National de la Recherche Scientifique), E. Le Guirriec(Centre National de la Recherche Scientifique), E. P. Le Quilleuc(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), M. LeBlanc(University of Arizona), T. LeCompte(Argonne National Laboratory), F. Ledroit-Guillon(Institut polytechnique de Grenoble), C. A. Lee(Brookhaven National Laboratory), G. R. Lee(Pontificia Universidad Católica de Chile), L. Lee(Harvard University), S. C. Lee(Institute of Physics, Academia Sinica), B. Lefebvre(McGill University), M. Lefebvre(University of Victoria), F. Legger(Ludwig-Maximilians-Universität München), C. Leggett(Lawrence Berkeley National Laboratory), G. Lehmann Miotto(European Organization for Nuclear Research), W. A. Leight(Deutsches Elektronen-Synchrotron DESY), A. Leisos(Aristotle University of Thessaloniki), M. A. L. Leite(Universidade de São Paulo), R. Leitner(Charles University), D. Lellouch(Weizmann Institute of Science), Boris Lemmer(University of Göttingen), K. J. C. Leney(University College London), T. Lenz(University of Bonn), B. Lenzi(European Organization for Nuclear Research), R. Leone(University of Arizona), S. Leone(Istituto Nazionale di Fisica Nucleare, Sezione di Pisa), C. Leonidopoulos(University of Edinburgh), G. Lerner(University of Sussex), C. Leroy(Institute of Particle Physics), R. Les(University of Toronto), A. A. J. Lesage(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), C. G. Lester(University of Cambridge), M. Levchenko(Kurchatov Institute), J. Levêque(Centre National de la Recherche Scientifique), D. Levin(University of Michigan), L. J. Levinson(Weizmann Institute of Science), D. J. Lewis(Queen Mary University of London), B. Li(University of Michigan), C-Q. Li(University of Science and Technology of China), L. Li(Shandong University), L. Li(Shanghai Jiao Tong University), Q. Li(University of Science and Technology of China), Q. Y. Li(University of Science and Technology of China), S. Li(Shanghai Jiao Tong University), X. Li(Shanghai Jiao Tong University), Y. Li(University of Siegen), Z. Liang(Chinese Academy of Sciences), B. Liberti(Istituto Nazionale di Fisica Nucleare, Roma Tor Vergata), A. Liblong(University of Toronto), K. Lie(Hong Kong University of Science and Technology), S. Liem(National Institute for Subatomic Physics), A. Limosani(The University of Sydney), C. Y. Lin(University of Cambridge), K. Lin(Michigan State University), S. C. Lin(Institute of Physics, Academia Sinica), T. H. Lin(Johannes Gutenberg University Mainz), R. A. Linck(Indiana University Bloomington), B.E. Lindquist(Stony Brook University), A. L. Lionti(University of Geneva), E. Lipeles(University of Pennsylvania), A. Lipniacka(University of Bergen), M. Lisovyi(Heidelberg University), T. M. Liss(University of Illinois Urbana-Champaign), A. Lister(University of British Columbia), A. M. Litke(University of California, Santa Cruz), J. D. Little(The University of Texas at Arlington), B. Liu(Argonne National Laboratory), B. Liu(Argonne National Laboratory), H. Liu(Brookhaven National Laboratory), H. Liu(Brookhaven National Laboratory), J. B. Liu(University of Science and Technology of China), J. K. K. Liu(University of Science and Technology of China), K. Liu(Centre National de la Recherche Scientifique), M. Liu(University of Science and Technology of China), P. Liu(Lawrence Berkeley National Laboratory), Y. Liu(University of Science and Technology of China), X. Liu(University of Science and Technology of China), M. Livan(University of Pavia), A. Lléres(Institut polytechnique de Grenoble), J. Llorente Merino(Chinese Academy of Sciences), S. L. Lloyd(Queen Mary University of London), C. Y. Lo(University of Hong Kong), F. Lo Sterzo(Southern Methodist University), E. Lobodzinska(Deutsches Elektronen-Synchrotron DESY), P. Loch(University of Arizona), F. K. Loebinger(University of Manchester), A. Loesle(University of Freiburg), K. M. Loew(Brandeis University), T. Lohse(Humboldt-Universität zu Berlin), K. Lohwasser(University of Sheffield), M. Lokajı́ček(Czech Academy of Sciences), B. A. Long(Boston University), J. D. Long(University of Illinois Urbana-Champaign), R. E. Long(Lancaster University), L. Longo(University of Salento), K. A. Looper(The Ohio State University), J. A. López(Federico Santa María Technical University), I. López Paz(Institute for High Energy Physics), A. Lopez Solis(Centre National de la Recherche Scientifique), J. Lorenz(Ludwig-Maximilians-Universität München), N. Lorenzo Martinez(Centre National de la Recherche Scientifique), M. Losada(Universidad Antonio Nariño), P. J. Lösel(Ludwig-Maximilians-Universität München), X. Lou(Chinese Academy of Sciences), X. Lou(Chinese Academy of Sciences), A. Lounis(Université Paris-Sud), J. Love(Argonne National Laboratory), P. A. Love(Lancaster University), J. J. Lozano Bahilo(Universitat de València), H. Lü(Chinese University of Hong Kong), N. Lu(University of Michigan), Y. J. Lu(National Tsing Hua University), H. J. Lubatti(University of Washington), C. Luci(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), A. Lucotte(Institut polytechnique de Grenoble), C. Luedtke(University of Freiburg), F. Luehring(Indiana University Bloomington), I. Luise(Centre National de la Recherche Scientifique), W. Lukas(Universität Innsbruck), L. Luminari(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), B. Lund-Jensen(KTH Royal Institute of Technology), M. S. Lutz(University of Massachusetts Amherst), P. M. Luzi(Centre National de la Recherche Scientifique), D. Lynn(Brookhaven National Laboratory), R. Lysák(Czech Academy of Sciences), E. Lytken(Lund University), F. Lyu(Chinese Academy of Sciences), V. Lyubushkin(Joint Institute for Nuclear Research), H. Ma(Brookhaven National Laboratory), L. L.(Shandong University), Y. Ma(Shandong University), G. Maccarrone(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), A. Macchiolo(Max Planck Institute for Physics), C. M. Macdonald(University of Sheffield), J. Machado Miguens(University of Lisbon), D. Madaffari(Universitat de València), R. Madar(Centre National de la Recherche Scientifique), W. F. Mader(Technische Universität Dresden), A. Madsen(Deutsches Elektronen-Synchrotron DESY), N. Madysa(Technische Universität Dresden), J. Maeda(Kobe University), S. Maeland(University of Bergen), T. Maeno(Brookhaven National Laboratory), A. Maevskiy(Lomonosov Moscow State University), V. Magerl(University of Freiburg), C. Maidantchik(Universidade Federal do Rio de Janeiro), T. Maier(Ludwig-Maximilians-Universität München), A. Maio(University of Lisbon), O. Majerský(Comenius University Bratislava), S. Majewski(University of Oregon), Y. Makida(High Energy Accelerator Research Organization), N. Makovec(Université Paris-Sud), B. Malaescu(Centre National de la Recherche Scientifique), Pa. Malecki(Institute of Nuclear Physics, Polish Academy of Sciences), V. P. Maleev(Kurchatov Institute), F. Malek(Institut polytechnique de Grenoble), U. Mallik(University of Iowa), D. Malon(Argonne National Laboratory), C. Malone(University of Cambridge), S. Maltezos(National Technical University of Athens), S. Malyukov(European Organization for Nuclear Research), J. Mamuzic(Universitat de València), G. Mancini(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), I. Mandić(University of Ljubljana), J. Maneira(LIP - Laboratory of Instrumentation and Experimental Particle Physics), L. Manhaes de Andrade Filho(Universidade Federal de Juiz de Fora), J. Manjarres Ramos(Technische Universität Dresden), K. H. Mankinen(Lund University), A. Mann(Ludwig-Maximilians-Universität München), A. Manousos(Universität Innsbruck), B. Mansoulie(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), J. D. Mansour(Chinese Academy of Sciences), M. Mantoani(University of Göttingen), S. Manzoni(University of Milan), G. Marceca(Universidad de Buenos Aires), L. March(University of Geneva), L. Marchese(University of Oxford), G. Marchiori(Centre National de la Recherche Scientifique), M. Marčišovský(Czech Academy of Sciences), C. A. Marin Tobon(European Organization for Nuclear Research), M. Marjanović(Centre National de la Recherche Scientifique), D. E. Marley(University of Michigan), F. Marroquim(Universidade Federal do Rio de Janeiro), Z. Marshall(Lawrence Berkeley National Laboratory), M. U. F. Martensson(Uppsala University), S. Marti-Garcia(Universitat de València), C. B. Martin(The Ohio State University), T. A. Martin(University of Warwick), V. J. Martin(University of Edinburgh), B. Martin dit Latour(University of Bergen), M. Martı́nez(Institute for High Energy Physics), V. I. Martinez Outschoorn(University of Massachusetts Amherst), S. Martin–Haugh(Rutherford Appleton Laboratory), V. S. Martoiu(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), A. C. Martyniuk(University College London), A. Marzin(European Organization for Nuclear Research), L. Masetti(Johannes Gutenberg University Mainz), T. Mashimo(The University of Tokyo), R. Mashinistov(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), J. Masik(University of Manchester), A. L. Maslennikov(Novosibirsk State University), L. H. Mason(The University of Melbourne), L. Massa(University of Rome Tor Vergata), P. Mastrandrea(Centre National de la Recherche Scientifique), A. Mastroberardino(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), T. Masubuchi(The University of Tokyo), P. Mättig(University of Wuppertal), J. Maurer(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), B. Maček(University of Ljubljana), S. J. Maxfield(University of Liverpool), D. A. Maximov(Novosibirsk State University), R. Mazini(Institute of Physics, Academia Sinica), I. Maznas(Aristotle University of Thessaloniki), S. M. Mazza(University of California, Santa Cruz), N. C. Mc Fadden(University of New Mexico), G. Mc Goldrick(University of Toronto), S. P. Mc Kee(University of Michigan), A. McCarn(University of Michigan), T. G. McCarthy(Max Planck Institute for Physics), L. I. McClymont(University College London), E. F. McDonald(The University of Melbourne), J. A. Mcfayden(European Organization for Nuclear Research), G. Mchedlidze(University of Göttingen), M. A. McKay(Southern Methodist University), K. D. McLean(University of Victoria), S. J. McMahon(Rutherford Appleton Laboratory), P. C. McNamara(The University of Melbourne), C. J. McNicol(University of Warwick), R. A. McPherson(University of Victoria), J. E. Mdhluli(University of the Witwatersrand), Z. A. Meadows(University of Massachusetts Amherst), S. Meehan(University of Washington), T. Megy(University of Freiburg), S. Mehlhase(Ludwig-Maximilians-Universität München), A. Mehta(University of Liverpool), T. Meideck(Institut polytechnique de Grenoble), B. Meirose(The University of Texas at Dallas), D. Melini(Universitat de València), B. R. Mellado Garcia(University of the Witwatersrand), J. D. Mellenthin(University of Göttingen), M. Melo(Comenius University Bratislava), F. Meloni(University of Bern), A. Melzer(University of Bonn), S. B. Menary(University of Manchester), Lingxin Meng(University of Liverpool), X. T. Meng(University of Michigan), A. Mengarelli(Osservatorio astronomico di Bologna), S. Menke(Max Planck Institute for Physics), E. Meoni(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), S. Ye(Humboldt-Universität zu Berlin), C. Merlassino(University of Bern), P. Mermod(University of Geneva), L. Merola(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), C. Meroni(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), F. S. Merritt(Fermi National Accelerator Laboratory), A. Messina(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), J. Metcalfe(Argonne National Laboratory), A. S. Mete(University of California, Irvine), C. Meyer(University of Pennsylvania), J. Meyer(Technion – Israel Institute of Technology), J. Meyer(Technion – Israel Institute of Technology), H. Meyer Zu Theenhausen(Heidelberg University), F. Miano(University of Sussex), R. P. Middleton(Rutherford Appleton Laboratory), L. Mijović(University of Edinburgh), G. Mikenberg(Weizmann Institute of Science), M. Mikeštíková(Czech Academy of Sciences), M. Mikuž(University of Ljubljana), M. Milesi(The University of Melbourne), A. Milic(University of Toronto), D. A. Millar(Queen Mary University of London), D. W. Miller(Fermi National Accelerator Laboratory), A. Milov(Weizmann Institute of Science), D. A. Milstead(Stockholm University), A. A. Minaenko(Institute for High Energy Physics), I.A. Minashvili(Tbilisi State University), A. I. Mincer(New York University), B. Mindur(AGH University of Krakow), M. Mineev(Joint Institute for Nuclear Research), Y. Minegishi(The University of Tokyo), Y. Ming(University of Wisconsin–Madison), L. M. Mir(Institute for High Energy Physics), A. Mirto(University of Salento), K. P. Mistry(University of Pennsylvania), T. Mitani(Waseda University), J. Mitrevski(Ludwig-Maximilians-Universität München), V. A. Mitsou(Universitat de València), A. Miucci(University of Bern), P. S. Miyagawa(University of Sheffield), A. Mizukami(High Energy Accelerator Research Organization), J. U. Mjörnmark(Lund University), T. Mkrtchyan(A. Alikhanyan National Laboratory), M. Mlynarikova(Charles University), T. Moa(Stockholm University), K. Mochizuki(Institute of Particle Physics), P. Mogg(University of Freiburg), S. Mohapatra(Columbia University), S. Molander(Stockholm University), R. Moles-Valls(University of Bonn), M. C. Mondragon(Michigan State University), K. Mönig(Deutsches Elektronen-Synchrotron DESY), J. Monk(University of Copenhagen), E. Monnier(Centre National de la Recherche Scientifique), A. Montalbano(Simon Fraser University), J. Montejo Berlingen(European Organization for Nuclear Research), F. Monticelli(Consejo Nacional de Investigaciones Científicas y Técnicas), S. Monzani(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), R. W. Moore(University of Alberta), N. Morange(Université Paris-Sud), D. Moreno(Universidad Antonio Nariño), M. Moreno Llácer(European Organization for Nuclear Research), P. Morettini(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), M. Morgenstern(National Institute for Subatomic Physics), S. Morgenstern(European Organization for Nuclear Research), D. Mori(Simon Fraser University), T. Mori(The University of Tokyo), M. Morii(Harvard University), M. Morinaga(Waseda University), V. Morisbak(University of Oslo), A. K. Morley(European Organization for Nuclear Research), G. Mornacchi(European Organization for Nuclear Research), J. D. Morris(Queen Mary University of London), L. Morvaj(Stony Brook University), P. Moschovakos(National Technical University of Athens), M. Mosidze(Tbilisi State University), H. J. Moss(University of Sheffield), J. Moss(SLAC National Accelerator Laboratory), K. Motohashi(Tokyo Institute of Technology), R. Mount(SLAC National Accelerator Laboratory), E. Mountricha(Brookhaven National Laboratory), E. J. W. Moyse(University of Massachusetts Amherst), S. Muanza(Centre National de la Recherche Scientifique), F. Mueller(Max Planck Institute for Physics), J. Mueller(University of Pittsburgh), J. Mueller(Ludwig-Maximilians-Universität München), D. Muenstermann(Lancaster University), P. Mullen(University of Glasgow), G. A. Mullier(University of Bern), F. J. Muñoz Sánchez(University of Manchester), П. Мурін(Slovak Academy of Sciences), W. J. Murray(Rutherford Appleton Laboratory), A. Murrone(University of Milan), M. Muškinja(University of Ljubljana), C. Mwewa(University of Cape Town), A. G. Myagkov(Institute for High Energy Physics), J. Myers(University of Oregon), M. Myska(Czech Technical University in Prague), B. P. Nachman(Lawrence Berkeley National Laboratory), O. Nackenhorst(TU Dortmund University), K. Nagai(University of Oxford), R. Nagai(High Energy Accelerator Research Organization), K. Nagano(High Energy Accelerator Research Organization), Y. Nagasaka(Hiroshima Institute of Technology), K. Nagata(University of Tsukuba), M. Nagel(University of Freiburg), E. Nagy(Centre National de la Recherche Scientifique), A. M. Nairz(European Organization for Nuclear Research), Y. Nakahama(Obayashi (Japan)), Koichiro Nakamura(High Energy Accelerator Research Organization), T. Nakamura(The University of Tokyo), I. Nakano(Okayama University of Science), F. Napolitano(Heidelberg University), R. F. Naranjo Garcia(Deutsches Elektronen-Synchrotron DESY), R. Narayan(The University of Texas at Austin), D. I. Narrias Villar(Heidelberg University), I. Naryshkin(Kurchatov Institute), T. Naumann(Deutsches Elektronen-Synchrotron DESY), G. Navarro(Universidad Antonio Nariño), R. Nayyar(University of Arizona), H. A. Neal(University of Michigan), P. Y. Nechaeva(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), T. J. Neep(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. Negri(University of Pavia), M. Negrini(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), S. Nektarijevic(Radboud University Nijmegen), C. Nellist(University of Göttingen), M. E. Nelson(University of Oxford), S. Němeček(Czech Academy of Sciences), P. Nemethy(New York University), M. Nessi(European Organization for Nuclear Research), M. S. Neubauer(University of Illinois Urbana-Champaign), Marcus A. Neumann(University of Wuppertal), P. R. Newman(University of Birmingham), T. Y. Ng(Hong Kong University of Science and Technology), Y. S. Ng(Humboldt-Universität zu Berlin), H. D. N. Nguyen(Centre National de la Recherche Scientifique), T. Nguyen Manh(Institute of Particle Physics), E. Nibigira(Centre National de la Recherche Scientifique), R. B. Nickerson(University of Oxford), R. Nicolaidou(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), J. Nielsen(University of California, Santa Cruz), N. Nikiforou(The University of Texas at Austin), V. Nikolaenko(Institute for High Energy Physics), I. Nikolic-Audit(Centre National de la Recherche Scientifique), K. Nikolopoulos(University of Birmingham), P. Nilsson(Brookhaven National Laboratory), H. R. Nindhito(University of Geneva), Y. Ninomiya(High Energy Accelerator Research Organization), A. Nisati(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), N. Nishu(Shanghai Jiao Tong University), R. Nisius(Max Planck Institute for Physics), I. Nitsche(TU Dortmund University), T. Nitta(Waseda University), T. Nobe(The University of Tokyo), Y. Noguchi(Kyoto University), M. Nomachi(The University of Osaka), I. Nomidis(Carleton University), M.A. Nomura(Brookhaven National Laboratory), T. Nooney(Queen Mary University of London), M. Nordberg(European Organization for Nuclear Research), N. Norjoharuddeen(University of Oxford), T. Novák(University of Ljubljana), O. Novgorodova(Technische Universität Dresden), R. Novotny(Czech Technical University in Prague), M. Nozaki(High Energy Accelerator Research Organization), L. Nozka(Palacký University Olomouc), K. Ntekas(University of California, Irvine), E. Nurse(University College London), F. Nuti(The University of Melbourne), F. G. Oakham(Carleton University), H. Oberlack(Max Planck Institute for Physics), T. Obermann(University of Bonn), J. Ocariz(Centre National de la Recherche Scientifique), A. Ochi(Kobe University), I. Ochoa(Columbia University), J. P. Ochoa‐Ricoux(Pontificia Universidad Católica de Chile), K. O’Connor(Brandeis University), S. Oda(Kyushu University), S. Oda(High Energy Accelerator Research Organization), A. Oh(University of Manchester), S. H. Oh(Duke University), C. C. Ohm(KTH Royal Institute of Technology), H. Oide(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), H. Okawa(University of Tsukuba), Y. Okazaki(Kyoto University), Y. Okumura(The University of Tokyo), T. Okuyama(High Energy Accelerator Research Organization), A. Olariu(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), L. F. Oleiro Seabra(LIP - Laboratory of Instrumentation and Experimental Particle Physics), S. A. Olivares Pino(Pontificia Universidad Católica de Chile), D. Oliveira Damazio(Brookhaven National Laboratory), J. L. Oliver(The University of Adelaide), M. J. R. Olsson(Fermi National Accelerator Laboratory), A. Olszewski(Institute of Nuclear Physics, Polish Academy of Sciences), J. Olszowska(Institute of Nuclear Physics, Polish Academy of Sciences), D. C. O’Neil(Simon Fraser University), A. Onofre(LIP - Laboratory of Instrumentation and Experimental Particle Physics), K. Onogi(Obayashi (Japan)), P. U. E. Onyisi(The University of Texas at Austin), H. Oppen(University of Oslo), M. J. Oreglia(Fermi National Accelerator Laboratory), Y. Oren(Tel Aviv University), D. Orestano(Roma Tre University), E. C. Orgill(University of Manchester), N. Orlando(University of Hong Kong), A. A. O’Rourke(Deutsches Elektronen-Synchrotron DESY), R. S. Orr(University of Toronto), B. Osculati(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), V. O’Shea(University of Glasgow), R. Ospanov(University of Science and Technology of China), G. Otero y Garzon(Universidad de Buenos Aires), H. Otono(Kyushu University), M. Ouchrif(Mohamed I University), F. Ould-Saada(University of Oslo), A. Ouraou(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), Q. Ouyang(Chinese Academy of Sciences), M. Owen(University of Glasgow), R. E. Owen(University of Birmingham), V. E. Ozcan(Boğaziçi University), N. Öztürk(The University of Texas at Arlington), J. Pácalt(Palacký University Olomouc), H. A. Pacey(University of Cambridge), K. Pachal(Simon Fraser University), A. Pacheco Pages(Institute for High Energy Physics), L. Pacheco Rodriguez(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), C. Padilla Aranda(Institute for High Energy Physics), S. Pagan Griso(Lawrence Berkeley National Laboratory), M. Paganini(Yale University), G. Palacino(Indiana University Bloomington), S. Palazzo(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), S. Palestini(European Organization for Nuclear Research), M. Pałka(Jagiellonian University), D. Pallin(Centre National de la Recherche Scientifique), I. Panagoulias(National Technical University of Athens), C. E. Pandini(European Organization for Nuclear Research), J. G. Panduro Vazquez(Royal Holloway University of London), P. Pani(European Organization for Nuclear Research), L. Paolozzi(University of Geneva), T. D. Papadopoulou(National Technical University of Athens), K. Papageorgiou(National and Kapodistrian University of Athens), A. Paramonov(Argonne National Laboratory), D. Paredes Hernandez(University of Hong Kong), B. Parida(Shanghai Jiao Tong University), A. J. Parker(Lancaster University), K. A. Parker(Deutsches Elektronen-Synchrotron DESY), M. A. Parker(University of Cambridge), F. Parodi(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), J. A. Parsons(Columbia University), U. Parzefall(University of Freiburg), V. R. Pascuzzi(University of Toronto), J. M. P. Pasner(University of California, Santa Cruz), E. Pasqualucci(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), S. Passaggio(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), F. Pastore(Royal Holloway University of London), P. Pasuwan(Stockholm University), S. Pataraia(Johannes Gutenberg University Mainz), J. R. Pater(University of Manchester), A. Pathak(University of Wisconsin–Madison), T. Pauly(European Organization for Nuclear Research), B. Pearson(Max Planck Institute for Physics), M. Pedersen(University of Oslo), S. Pedraza Lopez(Universitat de València), R. Pedro(University of Lisbon), S. V. Peleganchuk(Novosibirsk State University), O. Penc(Czech Academy of Sciences), C. Peng(University of Chinese Academy of Sciences), H. Peng(University of Science and Technology of China), B. S. Peralva(Universidade Federal de Juiz de Fora), M. M. Perego(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. P. Pereira Peixoto(LIP - Laboratory of Instrumentation and Experimental Particle Physics), D. V. Perepelitsa(Brookhaven National Laboratory), F. Peri(Humboldt-Universität zu Berlin), L. Perini(University of Milan), H. Pernegger(European Organization for Nuclear Research), S. Perrella(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), V.D. Peshekhonov(Joint Institute for Nuclear Research), Κ. Peters(Deutsches Elektronen-Synchrotron DESY), Κ. Peters(University of Manchester), B. A. Petersen(European Organization for Nuclear Research), T. C. Petersen(University of Copenhagen), E. Petit(Institut polytechnique de Grenoble), A. Petridis(The University of Adelaide), C. Petridou(Aristotle University of Thessaloniki), P. Petroff(Université Paris-Sud), E. Petrolo(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), M. Petrov(University of Oxford), F. Petrucci(Roma Tre University), N. E. Pettersson(University of Massachusetts Amherst), A. Peyaud(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), R. Pezoa(Federico Santa María Technical University), T. Pham(The University of Melbourne), F. H. Phillips(Michigan State University), P. W. Phillips(Rutherford Appleton Laboratory), G. Piacquadio(Stony Brook University), E. Pianori(Lawrence Berkeley National Laboratory), A. Picazio(University of Massachusetts Amherst), M. A. Pickering(University of Oxford), R. Piegaia(Universidad de Buenos Aires), J. E. Pilcher(Fermi National Accelerator Laboratory), A. D. Pilkington(University of Manchester), M. Pinamonti(University of Rome Tor Vergata), J. L. Pinfold(University of Alberta), M. Pitt(Weizmann Institute of Science), M.-A. Pleier(Brookhaven National Laboratory), V. Pleskot(Charles University), E. Plotnikova(Joint Institute for Nuclear Research), D. Pluth(Iowa State University), P. Podberezko(Novosibirsk State University), R. Poettgen(Lund University), R. Poggi(University of Pavia), L. Poggioli(Université Paris-Sud), I. Pogrebnyak(Michigan State University), D. Pohl(University of Bonn), I. Pokharel(University of Göttingen), G. Polesello(Istituto Nazionale di Fisica Nucleare, Sezione di Pavia), A. Poley(Deutsches Elektronen-Synchrotron DESY), A. Policicchio(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), R. Polifka(European Organization for Nuclear Research), A. Polini(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), C. S. Pollard(Deutsches Elektronen-Synchrotron DESY), V. Polychronakos(Brookhaven National Laboratory), D. Ponomarenko(National Research Nuclear University MEPhI), L. Pontecorvo(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), G. A. Popeneciu(National Institute for Research and Development of Isotopic and Molecular Technologies), D. M. Portillo Quintero(Centre National de la Recherche Scientifique), S. Pospisil(Czech Technical University in Prague), K. Potamianos(Deutsches Elektronen-Synchrotron DESY), I. N. Potrap(Joint Institute for Nuclear Research), C. J. Potter(University of Cambridge), H. Potti(The University of Texas at Austin), T. Poulsen(Lund University), J. Poveda(European Organization for Nuclear Research), T. D. Powell(University of Sheffield), M. E. Pozo Astigarraga(European Organization for Nuclear Research), P. Pralavorio(Centre National de la Recherche Scientifique), S. Prell(Iowa State University), D. Price(University of Manchester), M. Primavera(Istituto Nazionale di Fisica Nucleare, Sezione di Lecce), S. Prince(McGill University), N. Proklova(National Research Nuclear University MEPhI), K. Prokofiev(Hong Kong University of Science and Technology), F. Prokoshin(Federico Santa María Technical University), S. Protopopescu(Brookhaven National Laboratory), J. Proudfoot(Argonne National Laboratory), M. Przybycień(AGH University of Krakow), A. Puri(University of Illinois Urbana-Champaign), P. Puzo(Université Paris-Sud), J. Qian(University of Michigan), Y. Qin(University of Manchester), A. Quadt(University of Göttingen), M. Queitsch-Maitland(Deutsches Elektronen-Synchrotron DESY), A. Qureshi(The University of Adelaide), P. Rados(The University of Melbourne), F. Ragusa(University of Milan), G. Rahal(Centre de Calcul de l’Institut National de Physique Nucléaire et de Physique des Particules), J. A. Raine(University of Manchester), S. Rajagopalan(Brookhaven National Laboratory), T. Rashid(Université Paris-Sud), S. Raspopov(Centre National de la Recherche Scientifique), M. G. Ratti(University of Milan), D. M. Rauch(Deutsches Elektronen-Synchrotron DESY), F. Rauscher(Ludwig-Maximilians-Universität München), S. Rave(Johannes Gutenberg University Mainz), B. Ravina(University of Sheffield), I. Ravinovich(Weizmann Institute of Science), J H Rawling(University of Manchester), M. Raymond(European Organization for Nuclear Research), A. L. Read(University of Oslo), N. P. Readioff(Institut polytechnique de Grenoble), M. Reale(University of Salento), D. M. Rebuzzi(University of Pavia), A. Redelbach(University of Würzburg), G. Redlinger(Brookhaven National Laboratory), R. Reece(University of California, Santa Cruz), R. G. Reed(University of the Witwatersrand), K. Reeves(The University of Texas at Dallas), L. Rehnisch(Humboldt-Universität zu Berlin), J. Reichert(University of Pennsylvania), A. Reiss(Johannes Gutenberg University Mainz), C. Rembser(European Organization for Nuclear Research), Hang Ren(University of Chinese Academy of Sciences), M. Rescigno(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), S. Resconi(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), E. D. Resseguie(University of Pennsylvania), S. Rettie(University of British Columbia), E. Reynolds(University of Birmingham), O. L. Rezanova(Novosibirsk State University), P. Řezníček(Charles University), R. Richter(Max Planck Institute for Physics), S. Richter(University College London), E. Richter-Was(Jagiellonian University), O. Ricken(University of Bonn), M. Ridel(Centre National de la Recherche Scientifique), P. Rieck(Max Planck Institute for Physics), C. J. Riegel(University of Wuppertal), O. Rifki(Deutsches Elektronen-Synchrotron DESY), M. Rijssenbeek(Stony Brook University), A. Rimoldi(University of Pavia), M. Rimoldi(University of Bern), L. Rinaldi(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), G. Ripellino(KTH Royal Institute of Technology), B. Ristić(Lancaster University), E. Ritsch(European Organization for Nuclear Research), I. Riu(Institute for High Energy Physics), J. C. Rivera Vergara(Pontificia Universidad Católica de Chile), F. Rizatdinova(Oklahoma State University), E. Rizvi(Queen Mary University of London), C. Rizzi(Institute for High Energy Physics), R. T. Roberts(University of Manchester), S. H. Robertson(McGill University), A. Robichaud-Veronneau(McGill University), D. Robinson(University of Cambridge), J. E. M. Robinson(Deutsches Elektronen-Synchrotron DESY), A. Robson(University of Glasgow), E. Rocco(Johannes Gutenberg University Mainz), C. Roda(University of Pisa), Y. Rodina(Centre National de la Recherche Scientifique), S. Rodriguez Bosca(Universitat de València), A. Rodriguez Perez(Institute for High Energy Physics), D. Rodriguez Rodriguez(Universitat de València), A. M. Rodríguez Vera(York University), S. Roe(European Organization for Nuclear Research), C. S. Rogan(Harvard University), O. Røhne(University of Oslo), R. Röhrig(Max Planck Institute for Physics), C. P. A. Roland(Indiana University Bloomington), J. Roloff(Harvard University), A. Romaniouk(National Research Nuclear University MEPhI), M. Romano(Osservatorio astronomico di Bologna), N. Rompotis(University of Liverpool), M. Ronzani(New York University), L. Roos(Centre National de la Recherche Scientifique), S. Rosati(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), K. Rosbach(University of Freiburg), P. Rose(University of California, Santa Cruz), N-A. Rosien(University of Göttingen), E. Rossi(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), E. Rossi(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), L. Rossini(University of Milan), J. H. N. Rosten(University of Cambridge), R. Rosten(University of Washington), M. Rotaru(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), J. Rothberg(University of Washington), D. Rousseau(Université Paris-Sud), D. Roy(University of the Witwatersrand), A. Rozanov(Centre National de la Recherche Scientifique), Y. Rozen(Technion – Israel Institute of Technology), X. Ruan(University of the Witwatersrand), F. Rubbo(SLAC National Accelerator Laboratory), F. Rühr(University of Freiburg), A. Ruiz-Martínez(Carleton University), Z. Rurikova(University of Freiburg), N. A. Rusakovich(Joint Institute for Nuclear Research), H. L. Russell(McGill University), J. P. Rutherfoord(University of Arizona), N. Ruthmann(European Organization for Nuclear Research), E. M. Rüttinger(Deutsches Elektronen-Synchrotron DESY), Y. F. Ryabov(Kurchatov Institute), M. Rybar(University of Illinois Urbana-Champaign), G. Rybkin(Université Paris-Sud), S. Ryu(Argonne National Laboratory), A. Ryzhov(Institute for High Energy Physics), G. F. Rzehorz(University of Göttingen), P. Sabatini(University of Göttingen), G. Sabato(National Institute for Subatomic Physics), S. Sacerdoti(Université Paris-Sud), H. F-W. Sadrozinski(University of California, Santa Cruz), R. Sadykov(Joint Institute for Nuclear Research), F. Safai Tehrani(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), P. Saha(Northern Illinois University), M. Sahinsoy(Heidelberg University), A. Sahu(University of Wuppertal), M. Saimpert(Deutsches Elektronen-Synchrotron DESY), M. Saito(The University of Tokyo), T. Saito(The University of Tokyo), H. Sakamoto(The University of Tokyo), A. Sakharov(New York University), D. Salamani(University of Geneva), G. Salamanna(Roma Tre University), J. E. Salazar Loyola(Federico Santa María Technical University), D. Šálek(National Institute for Subatomic Physics), P. H. Sales De Bruin(Uppsala University), D. Salihagic(Max Planck Institute for Physics), A. Salnikov(SLAC National Accelerator Laboratory), J. Salt(Universitat de València), D. Salvatore(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), F. Salvatore(University of Sussex), A. Salvucci(Chinese University of Hong Kong), A. Salzburger(European Organization for Nuclear Research), D. Sammel(University of Freiburg), D. Sampsonidis(Aristotle University of Thessaloniki), D. Sampsonidou(Aristotle University of Thessaloniki), J. Sánchez(Universitat de València), A. Sanchez Pineda(University of Udine), H. Sandaker(University of Oslo), C. O. Sander(Deutsches Elektronen-Synchrotron DESY), M. Sandhoff(University of Wuppertal), C. Sandoval(Universidad Antonio Nariño), D. P. C. Sankey(Rutherford Appleton Laboratory), M. Sannino(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), Y. Sano(Obayashi (Japan)), A. Sansoni(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), C. Santoni(Centre National de la Recherche Scientifique), H. Santos(LIP - Laboratory of Instrumentation and Experimental Particle Physics), I. Santoyo Castillo(University of Sussex), A. Sapronov(Joint Institute for Nuclear Research), J. G. Saraiva(University of Lisbon), O. Sasaki(High Energy Accelerator Research Organization), K. Satô(University of Tsukuba), E. Sauvan(Centre National de la Recherche Scientifique), P. Savard(University of Toronto), N. Savić(Max Planck Institute for Physics), R. Sawada(The University of Tokyo), C. Sawyer(Rutherford Appleton Laboratory), L. Sawyer(Louisiana Tech University), C. Sbarra(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), A. Sbrizzi(Osservatorio astronomico di Bologna), T. Scanlon(University College London), D. A. Scannicchio(University of California, Irvine), J. Schaarschmidt(University of Washington), P. Schacht(Max Planck Institute for Physics), B. M. Schachtner(Ludwig-Maximilians-Universität München), D. Schaefer(Fermi National Accelerator Laboratory), L. Schaefer(University of Pennsylvania), J. Schaeffer(Johannes Gutenberg University Mainz), S. Schaepe(European Organization for Nuclear Research), U. Schäfer(Johannes Gutenberg University Mainz), A. C. Schaffer(Université Paris-Sud), D. Schaile(Ludwig-Maximilians-Universität München), R. D. Schamberger(Stony Brook University), N. Scharmberg(University of Manchester), V. A. Schegelsky(Kurchatov Institute), D. Scheirich(Charles University), F. Schenck(Humboldt-Universität zu Berlin), M. Schernau(University of California, Irvine), C. Schiavi(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), S. Schier(University of California, Santa Cruz), L. K. Schildgen(University of Bonn), Z. M. Schillaci(Brandeis University), M. Schioppa(European Organization for Nuclear Research), M. Schioppa(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), K. E. Schleicher(University of Freiburg), S. Schlenker(European Organization for Nuclear Research), K. R. Schmidt-Sommerfeld(Max Planck Institute for Physics), K. Schmieden(European Organization for Nuclear Research), C. Schmitt(Johannes Gutenberg University Mainz), S. Schmitt(Deutsches Elektronen-Synchrotron DESY), S. Schmitz(Johannes Gutenberg University Mainz), U. Schnoor(University of Freiburg), L. Schoeffel(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. Schoening(Heidelberg University), E. Schöpf(University of Bonn), M. Schott(Johannes Gutenberg University Mainz), J. F. P. Schouwenberg(Radboud University Nijmegen), J. Schovancova(European Organization for Nuclear Research), S. Schramm(University of Geneva), N. Schuh(Johannes Gutenberg University Mainz), A. Schulte(Johannes Gutenberg University Mainz), H.-C. Schultz-Coulon(Heidelberg University), M. Schumacher(University of Freiburg), B. A. Schumm(University of California, Santa Cruz), Ph. Schune(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), A. Schwartzman(SLAC National Accelerator Laboratory), Thomas Schwarz(University of Michigan), H. Schweiger(University of Manchester), Ph. Schwemling(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), R. Schwienhorst(Michigan State University), A. Sciandra(University of Bonn), G. Sciolla(Brandeis University), M. Scornajenghi(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), F. Scuri(Istituto Nazionale di Fisica Nucleare, Sezione di Pisa), F. Scutti(The University of Melbourne), L. M. Scyboz(Max Planck Institute for Physics), J. Searcy(University of Michigan), C. D. Sebastiani(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), P. Seema(University of Bonn), S. C. Seidel(University of New Mexico), A. Seiden(University of California, Santa Cruz), T. Seiss(Fermi National Accelerator Laboratory), J. M. Seixas(Universidade Federal do Rio de Janeiro), G. Sekhniaidze(Istituto Nazionale di Fisica Nucleare, Sezione di Napoli), K. Sekhon(University of Michigan), S. J. Sekula(Southern Methodist University), N. Semprini-Cesari(Osservatorio astronomico di Bologna), S. Sen(Duke University), S. Senkin(Centre National de la Recherche Scientifique), C. Serfon(University of Oslo), L. Serin(Université Paris-Sud), L. Serkin(The Abdus Salam International Centre for Theoretical Physics (ICTP)), M. Sessa(Roma Tre University), H. Severini(University of Oklahoma), F. Šforza(Tufts University), A. Sfyrla(University of Geneva), E. Shabalina(University of Göttingen), J. D. Shahinian(University of California, Santa Cruz), N. W. Shaikh(Stockholm University), L. Y. Shan(Chinese Academy of Sciences), R. Shang(University of Illinois Urbana-Champaign), J. T. Shank(Boston University), M. Shapiro(Lawrence Berkeley National Laboratory), A. S. Sharma(University of Oxford), A. S. Sharma(University of Oxford), P. B. Shatalov(Institute for Theoretical and Experimental Physics), K. Shaw(The Abdus Salam International Centre for Theoretical Physics (ICTP)), S. M. Shaw(University of Manchester), A. Shcherbakova(Kurchatov Institute), C. Y. Shehu(University of Sussex), Y. Shen(University of Oklahoma), N. Sherafati(Carleton University), A. D. Sherman(Boston University), P. Sherwood(University College London), L. Shi(Institute of Physics, Academia Sinica), S. Shimizu(Kobe University), C. O. Shimmin(Yale University), M. Shimojima(Nagasaki Institute of Applied Science), I. P. J. Shipsey(University of Oxford), S. Shirabe(Kyushu University), M. Shiyakova(Joint Institute for Nuclear Research), J. Shlomi(Weizmann Institute of Science), A. Shmeleva(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), D. Shoaleh Saadi(Institute of Particle Physics), M. J. Shochet(Fermi National Accelerator Laboratory), S. Shojaii(The University of Melbourne), D. R. Shope(University of Oklahoma), S. Shrestha(The Ohio State University), E. Shulga(National Research Nuclear University MEPhI), P. Šı́cho(Czech Academy of Sciences), A. M. Sickles(University of Illinois Urbana-Champaign), P.E. Sidebo(KTH Royal Institute of Technology), E. Sideras Haddad(University of the Witwatersrand), O. Sidiropoulou(University of Würzburg), A. Sidoti(Osservatorio astronomico di Bologna), F. Siegert(Technische Universität Dresden), Dj. Sijacki(University of Belgrade), J. Silva(LIP - Laboratory of Instrumentation and Experimental Particle Physics), M. Silva(University of Wisconsin–Madison), S. B. Silverstein(Stockholm University), L. Simic(Joint Institute for Nuclear Research), S. Simion(Université Paris-Sud), E. Simioni(Johannes Gutenberg University Mainz), M. Simon(Johannes Gutenberg University Mainz), P. Sinervo(University of Toronto), N. B. Sinev(University of Oregon), M. Sioli(Osservatorio astronomico di Bologna), G. Siragusa(University of Würzburg), I. Siral(University of Michigan), S.Yu. Sivoklokov(Lomonosov Moscow State University), J. Sjölin(Stockholm University), M. B. Skinner(Lancaster University), P. Skubic(University of Oklahoma), M. Slater(University of Birmingham), T. Slavicek(Czech Technical University in Prague), M. Sławińska(Institute of Nuclear Physics, Polish Academy of Sciences), K. Śliwa(Tufts University), R. Slovak(Charles University), V. Smakhtin(Weizmann Institute of Science), B. H. Smart(Centre National de la Recherche Scientifique), J. Smiesko(Comenius University Bratislava), N. Smirnov(National Research Nuclear University MEPhI), S. Yu. Smirnov(National Research Nuclear University MEPhI), Y. Smirnov(National Research Nuclear University MEPhI), L. N. Smirnova(Lomonosov Moscow State University), O. Smirnova(Lund University), J. W. Smith(University of Göttingen), M. N. K. Smith(Columbia University), R. W. Smith(Columbia University), M. Smižanská(Lancaster University), K. Smolek(Czech Technical University in Prague), A. A. Snesarev(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), I. M. Snyder(University of Oregon), S. Snyder(Brookhaven National Laboratory), R. Sobie(University of Victoria), A. M. Soffa(University of California, Irvine), A. Soffer(Tel Aviv University), A. Søgaard(University of Edinburgh), D. A. Soh(Institute of Physics, Academia Sinica), G. Sokhrannyi(University of Ljubljana), C. A. Solans Sanchez(European Organization for Nuclear Research), M. Solar(Czech Technical University in Prague), E. Yu. Soldatov(National Research Nuclear University MEPhI), U. Soldevila(Universitat de València), A. A. Solodkov(Institute for High Energy Physics), A. Soloshenko(Joint Institute for Nuclear Research), O. V. Solovyanov(Institute for High Energy Physics), V. Solovyev(Kurchatov Institute), P. Sommer(University of Sheffield), H. Son(Tufts University), W. M. Song(Rutherford Appleton Laboratory), A. Sopczak(Czech Technical University in Prague), F. Sopkova(Slovak Academy of Sciences), D. Sosa(Heidelberg University), C. L. Sotiropoulou(University of Pisa), S. Sottocornola(University of Pavia), R. Soualah(University of Udine), A. M. Soukharev(Novosibirsk State University), D. South(Deutsches Elektronen-Synchrotron DESY), B. C. Sowden(Royal Holloway University of London), S. Spagnolo(University of Salento), M. Spalla(Max Planck Institute for Physics), M. Spangenberg(University of Warwick), F. Spanò(Royal Holloway University of London), D. Sperlich(Humboldt-Universität zu Berlin), F. Spettel(Max Planck Institute for Physics), T. M. Spieker(Heidelberg University), R. Spighi(Istituto Nazionale di Fisica Nucleare, Sezione di Bologna), G. Spigo(European Organization for Nuclear Research), L. A. Spiller(The University of Melbourne), M. Spousta(Charles University), A. Stabile(University of Milan), R. Stamen(Heidelberg University), S. Stamm(Humboldt-Universität zu Berlin), E. Stanecka(Institute of Nuclear Physics, Polish Academy of Sciences), R. W. Stanek(Argonne National Laboratory), C. Stanescu(Istituto Nazionale di Fisica Nucleare, Sezione di Roma Tre), M. M. Stanitzki(Deutsches Elektronen-Synchrotron DESY), B. Stapf(National Institute for Subatomic Physics), S. Stapnes(University of Oslo), E. A. Starchenko(Institute for High Energy Physics), G. H. Stark(Fermi National Accelerator Laboratory), G. H. Stark(Institut polytechnique de Grenoble), S. H Stark(University of Copenhagen), P. Staroba(Czech Academy of Sciences), P. Starovoitov(Heidelberg University), S. Stärz(European Organization for Nuclear Research), R. Staszewski(Institute of Nuclear Physics, Polish Academy of Sciences), M. Stegler(Deutsches Elektronen-Synchrotron DESY), P. Steinberg(Brookhaven National Laboratory), B. Stelzer(Simon Fraser University), H. J. Stelzer(European Organization for Nuclear Research), O. Stelzer-Chilton(TRIUMF), H. Stenzel(Justus-Liebig-Universität Gießen), T. J. Stevenson(Queen Mary University of London), G. A. Stewart(University of Glasgow), M. C. Stockton(University of Oregon), G. Stoicea(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), P. Stolte(University of Göttingen), S. Stonjek(Max Planck Institute for Physics), A. Straessner(Technische Universität Dresden), J. Strandberg(KTH Royal Institute of Technology), S. Strandberg(Stockholm University), M. Strauss(University of Oklahoma), P. Stríženec(Slovak Academy of Sciences), R. Ströhmer(University of Würzburg), D. M. Strom(University of Oregon), R. Stroynowski(Southern Methodist University), A. Strubig(University of Edinburgh), S. A. Stucci(Brookhaven National Laboratory), B. Stugu(University of Bergen), J. Stupak(University of Oklahoma), N. A. Styles(Deutsches Elektronen-Synchrotron DESY), D. Su(SLAC National Accelerator Laboratory), J. Su(University of Pittsburgh), S. Suchek(Heidelberg University), Y. Sugaya(The University of Osaka), M. Suk(Czech Technical University in Prague), V. V. Sulin(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), D. M. S. Sultan(University of Geneva), S. Sultansoy(TOBB University of Economics and Technology), T. Sumida(Kyoto University), S. Sun(University of Michigan), X. Sun(University of Alberta), K. Suruliz(University of Sussex), C. J. E. Suster(The University of Sydney), M. R. Sutton(University of Sussex), S. Suzuki(High Energy Accelerator Research Organization), M. Svatos(Czech Academy of Sciences), M. Swiatlowski(Fermi National Accelerator Laboratory), S. P. Swift(University at Albany, State University of New York), A. Sydorenko(Johannes Gutenberg University Mainz), I. Sýkora(Comenius University Bratislava), T. Sykora(Charles University), D. Ta(Johannes Gutenberg University Mainz), K. Tackmann(Deutsches Elektronen-Synchrotron DESY), J. Taenzer(Tel Aviv University), A. Taffard(University of California, Irvine), R. Tafirout(TRIUMF), E. Tahirovič(Queen Mary University of London), N. Taiblum(Tel Aviv University), H. Takai(Brookhaven National Laboratory), R. Takashima(Kyoto University of Education), E. H. Takasugi(Max Planck Institute for Physics), K. Takeda(Kobe University), T. Takeshita(Shinshu University), Y. Takubo(High Energy Accelerator Research Organization), M. Talby(Centre National de la Recherche Scientifique), A. A. Talyshev(Novosibirsk State University), J. Tanaka(The University of Tokyo), M. Tanaka(Tokyo Institute of Technology), R. Tanaka(Université Paris-Sud), R. Tanioka(Kobe University), B. B. Tannenwald(The Ohio State University), S. Tapia Araya(Federico Santa María Technical University), S. Tapprogge(Johannes Gutenberg University Mainz), Ahmed Tarek Abouelfadl Mohamed(Centre National de la Recherche Scientifique), S. Tarem(Technion – Israel Institute of Technology), G. Tarna(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), G. F. Tartarelli(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), P. Tas(Charles University), M. Tasevsky(Czech Academy of Sciences), T. Tashiro(Kyoto University), E. ̃Tassi(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), A. Tavares Delgado(University of Lisbon), Y. Tayalati(Mohammed V University), G. N. Taylor(University of New Mexico), A. J. Taylor(University of New Mexico), G. N. Taylor(The University of Melbourne), P. T. E. Taylor(The University of Melbourne), W. Taylor(York University), A. S. Tee(Lancaster University), P. Teixeira-Dias(Royal Holloway University of London), D. Temple(Simon Fraser University), H. Ten Kate(European Organization for Nuclear Research), P. K. Teng(Institute of Physics, Academia Sinica), J. J. Teoh(The University of Osaka), F. Tepel(University of Wuppertal), S. Terada(High Energy Accelerator Research Organization), K. Terashi(The University of Tokyo), J. Terrón(Universidad Autónoma de Madrid), S. Terzo(Institute for High Energy Physics), M. Testa(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), R. J. Teuscher(University of Toronto), S. J. Thais(Yale University), T. Theveneaux-Pelzer(Deutsches Elektronen-Synchrotron DESY), F. Thiele(University of Copenhagen), J. P. Thomas(University of Birmingham), A. S. Thompson(University of Glasgow), P. D. Thompson(University of Birmingham), L. A. Thomsen(Yale University), E. Thomson(University of Pennsylvania), Y. Tian(Columbia University), R. E. Ticse Torres(University of Göttingen), V. O. Tikhomirov(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), Yu. A. Tikhonov(Novosibirsk State University), S. Timoshenko(National Research Nuclear University MEPhI), P. Tipton(Yale University), S. Tisserant(Centre National de la Recherche Scientifique), K. Todome(Tokyo Institute of Technology), Š. Todorova-Nová(Centre National de la Recherche Scientifique), S. Todt(Technische Universität Dresden), J. Tojo(Kyushu University), S. Tokár(Comenius University Bratislava), K. Tokushuku(High Energy Accelerator Research Organization), E. Tolley(The Ohio State University), M. Tomoto(Obayashi (Japan)), L. Tompkins(SLAC National Accelerator Laboratory), K. Toms(University of New Mexico), B. Tong(Harvard University), P. Tornambe(University of Freiburg), E. Torrence(University of Oregon), H. Torres(Technische Universität Dresden), E. Torró Pastor(University of Washington), C. Tosciri(University of Oxford), J. Tóth(Centre National de la Recherche Scientifique), F. Touchard(Centre National de la Recherche Scientifique), D. R. Tovey(University of Sheffield), C. J. Treado(New York University), T. Trefzger(University of Würzburg), F. Tresoldi(University of Sussex), A. Tricoli(Brookhaven National Laboratory), I. M. Trigger(TRIUMF), S. Trincaz-Duvoid(Centre National de la Recherche Scientifique), M. F. Tripiana(Institute for High Energy Physics), W. Trischuk(University of Toronto), B. Trocmé(Institut polytechnique de Grenoble), A. Trofymov(Université Paris-Sud), C. Troncon(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), M. Trovatelli(University of Victoria), F. Trovato(University of Sussex), L. Truong(University of Johannesburg), M. Trzebiński(Institute of Nuclear Physics, Polish Academy of Sciences), A. Trzupek(Institute of Nuclear Physics, Polish Academy of Sciences), F. Tsai(Deutsches Elektronen-Synchrotron DESY), J. Tseng(University of Oxford), P. V. Tsiareshka(National Academy of Sciences of Belarus), N. Tsirintanis(National and Kapodistrian University of Athens), V. Tsiskaridze(Stony Brook University), E. G. Tskhadadze(Tbilisi State University), I. I. Tsukerman(Institute for Theoretical and Experimental Physics), V. Tsulaia(Lawrence Berkeley National Laboratory), S. Tsuno(High Energy Accelerator Research Organization), D. Tsybychev(Stony Brook University), Y. Tu(University of Hong Kong), A. Tudorache(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), V. Tudorache(Horia Hulubei National Institute for R and D in Physics and Nuclear Engineering), T. T. Tulbure(Transylvania University of Brașov), A. N. Tuna(Harvard University), S. Turchikhin(Joint Institute for Nuclear Research), D. Turgeman(Weizmann Institute of Science), I. Turk Cakir(Istanbul Aydın University), R. Turra(Istituto Nazionale di Fisica Nucleare, Sezione di Milano), P. M. Tuts(Columbia University), E. Tzovara(Johannes Gutenberg University Mainz), G. Ucchielli(Osservatorio astronomico di Bologna), I. Ueda(High Energy Accelerator Research Organization), Michaël Ughetto(Stockholm University), F. Ukegawa(University of Tsukuba), G. Unal(European Organization for Nuclear Research), A. Undrus(Brookhaven National Laboratory), G. Ünel(University of California, Irvine), F. C. Ungaro(The University of Melbourne), Y. Unno(High Energy Accelerator Research Organization), K. Uno(The University of Tokyo), J. Urban(Slovak Academy of Sciences), P. Urquijo(The University of Melbourne), P. Urrejola(Johannes Gutenberg University Mainz), G. Usai(The University of Texas at Arlington), J. Usui(High Energy Accelerator Research Organization), L. Vacavant(Centre National de la Recherche Scientifique), V. Vacek(Czech Technical University in Prague), B. Vachon(McGill University), K. O. H. Vadla(University of Oslo), A. Vaidya(University College London), C. Valderanis(Ludwig-Maximilians-Universität München), E. Valdes Santurio(Stockholm University), M. Valente(University of Geneva), S. Valentinetti(Osservatorio astronomico di Bologna), A. Valero(Universitat de València), L. Valéry(Deutsches Elektronen-Synchrotron DESY), R. A. Vallance(University of Birmingham), A. Vallier(Centre National de la Recherche Scientifique), J. A. Valls Ferrer(Universitat de València), T. R. Van Daalen(Institute for High Energy Physics), W. Van Den Wollenberg(National Institute for Subatomic Physics), H. Van der Graaf(National Institute for Subatomic Physics), P. van Gemmeren(Argonne National Laboratory), J. Van Nieuwkoop(Simon Fraser University), I. van Vulpen(National Institute for Subatomic Physics), M. C. van Woerden(National Institute for Subatomic Physics), M. Vanadia(University of Rome Tor Vergata), W. Vandelli(European Organization for Nuclear Research), A. Vaniachine(National Research Tomsk State University), P. Vankov(National Institute for Subatomic Physics), R. Vari(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), E. W. Varnes(University of Arizona), C. Varni(Istituto Nazionale di Fisica Nucleare, Sezione di Genova), T. Varol(Southern Methodist University), D. Varouchas(Université Paris-Sud), A. Vartapetian(The University of Texas at Arlington), K. E. Varvell(The University of Sydney), G. A. Vasquez(Federico Santa María Technical University), J. G. Vasquez(Yale University), F. Vazeille(Centre National de la Recherche Scientifique), D. Vázquez Furelos(Institute for High Energy Physics), T. Vazquez Schroeder(McGill University), J. Veatch(University of Göttingen), V. Vecchio(Roma Tre University), L. M. Veloce(University of Toronto), F. Veloso(LIP - Laboratory of Instrumentation and Experimental Particle Physics), S. Veneziano(Istituto Nazionale di Fisica Nucleare, Sezione di Roma I), A. Ventura(University of Salento), M. Venturi(University of Victoria), N. Venturi(European Organization for Nuclear Research), V. Vercesi(Istituto Nazionale di Fisica Nucleare, Sezione di Pavia), M. Verducci(Roma Tre University), W. Verkerke(National Institute for Subatomic Physics), A. T. Vermeulen(National Institute for Subatomic Physics), J. C. Vermeulen(National Institute for Subatomic Physics), M. C. Vetterli(Simon Fraser University), N. Viaux Maira(Federico Santa María Technical University), O. Viazlo(Lund University), I. Vichou(University of Illinois Urbana-Champaign), T. Vickey(University of Sheffield), O. E. Vickey Boeriu(University of Sheffield), G. H. A. Viehhauser(University of Oxford), S. Viel(Lawrence Berkeley National Laboratory), L. Vigani(University of Oxford), M. Villa(Osservatorio astronomico di Bologna), M. Villaplana Perez(University of Milan), E. Vilucchi(Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di Frascati), M. G. Vincter(Carleton University), V. B. Vinogradov(Joint Institute for Nuclear Research), A. Vishwakarma(Deutsches Elektronen-Synchrotron DESY), C. Vittori(Osservatorio astronomico di Bologna), I. Vivarelli(University of Sussex), S. Vlachos(National Technical University of Athens), M. Vogel(University of Wuppertal), P. Vokac(Czech Technical University in Prague), G. Volpi(Institute for High Energy Physics), S. E. von Buddenbrock(University of the Witwatersrand), E. von Toerne(University of Bonn), V. Vorobel(Charles University), K. Vorobev(National Research Nuclear University MEPhI), M. Vos(Universitat de València), J. H. Vossebeld(University of Liverpool), N. Vranješ(University of Belgrade), M. Vranješ Milosavljević(University of Belgrade), V. Vrba(Czech Technical University in Prague), M. Vreeswijk(National Institute for Subatomic Physics), T. Šfiligoj(University of Ljubljana), R. Vuillermet(European Organization for Nuclear Research), I. Vukotić(Fermi National Accelerator Laboratory), T. Ženiš(Comenius University Bratislava), L. Živković(University of Belgrade), P. Wagner(University of Bonn), W. Wagner(University of Wuppertal), J. Wagner-Kuhr(Ludwig-Maximilians-Universität München), H. Wahlberg(Consejo Nacional de Investigaciones Científicas y Técnicas), S. Wahrmund(Technische Universität Dresden), K. Wakamiya(Kobe University), J. Walder(Lancaster University), R. Walker(Ludwig-Maximilians-Universität München), W. Walkowiak(University of Siegen), V. Wallangen(Stockholm University), A. M. Wang(Harvard University), C. Wang(Shandong University), F. Wang(University of Wisconsin–Madison), H. Wang(Lawrence Berkeley National Laboratory), H. Wang(Lawrence Berkeley National Laboratory), Jinglu Wang(The University of Sydney), J. Wang(The University of Sydney), P. Wang(Southern Methodist University), Q. Wang(University of Oklahoma), R. Wang(University of Science and Technology of China), R. Wang(University of Science and Technology of China), R. Wang(University of Science and Technology of China), S. M. Wang(Institute of Physics, Academia Sinica), W. Wang(University of Science and Technology of China), X. Wang(University of Science and Technology of China), Y. Wang(University of Science and Technology of China), Z. Wang(Shanghai Jiao Tong University), C. Wanotayaroj(Deutsches Elektronen-Synchrotron DESY), A. Warburton(McGill University), C. P. Ward(University of Cambridge), D. R. Wardrope(University College London), A. Washbrook(University of Edinburgh), P. M. Watkins(University of Birmingham), A. T. Watson(University of Birmingham), M. F. Watson(University of Birmingham), G. Watts(University of Washington), G. Watts(University of Manchester), B. M. Waugh(University College London), A. F. Webb(The University of Texas at Austin), S. Webb(Johannes Gutenberg University Mainz), C. Weber(Yale University), M. Weber(University of Bern), S. A. Weber(Heidelberg University), S. M. Weber(Heidelberg University), J. S. Webster(Argonne National Laboratory), A. R. Weidberg(University of Oxford), B. Weinert(Indiana University Bloomington), J. Weingarten(University of Göttingen), M. Weirich(Johannes Gutenberg University Mainz), C. Weiser(University of Freiburg), P. S. Wells(European Organization for Nuclear Research), T. Wenaus(Brookhaven National Laboratory), T. Wengler(European Organization for Nuclear Research), S. Wenig(European Organization for Nuclear Research), N. Wermes(University of Bonn), M. Werner(Iowa State University), P. Werner(European Organization for Nuclear Research), M. Wessels(Heidelberg University), T. D. Weston(University of Bern), K. Whalen(University of Oregon), N. L. Whallon(University of Washington), A. M. Wharton(Lancaster University), A. White(The University of Texas at Arlington), M. J. White(The University of Texas at Arlington), M. J. White(The University of Adelaide), R. White(Federico Santa María Technical University), D. Whiteson(University of California, Irvine), B. W. Whitmore(Lancaster University), F. J. Wickens(Rutherford Appleton Laboratory), W. Wiedenmann(University of Wisconsin–Madison), M. Wielers(Rutherford Appleton Laboratory), C. Wiglesworth(University of Copenhagen), L. A. M. Wiik-Fuchs(University of Freiburg), A. Wildauer(Max Planck Institute for Physics), F. Wilk(University of Manchester), H. G. Wilkens(European Organization for Nuclear Research), H. H. Williams(University of Pennsylvania), S. Williams(University of Cambridge), C. Willis(Michigan State University), S. Willocq(University of Massachusetts Amherst), J. A. Wilson(University of Birmingham), I. Wingerter-Seez(Centre National de la Recherche Scientifique), E. Winkels(University of Sussex), F. Winklmeier(University of Oregon), O. J. Winston(University of Sussex), B. T. Winter(University of Bonn), M. Wittgen(SLAC National Accelerator Laboratory), M. Wobisch(Louisiana Tech University), A. Wolf(Johannes Gutenberg University Mainz), T. M. H. Wolf(National Institute for Subatomic Physics), R. Wolff(Centre National de la Recherche Scientifique), M. W. Wolter(Institute of Nuclear Physics, Polish Academy of Sciences), H. Wolters(LIP - Laboratory of Instrumentation and Experimental Particle Physics), V. W. S. Wong(University of British Columbia), N. Woods(University of California, Santa Cruz), S. D. Worm(University of Birmingham), B. K. Wosiek(Institute of Nuclear Physics, Polish Academy of Sciences), K. W. Woźniak(Institute of Nuclear Physics, Polish Academy of Sciences), K. Wraight(University of Glasgow), M. Wu(Fermi National Accelerator Laboratory), S. L. Wu(University of Wisconsin–Madison), X. Wu(University of Geneva), Y. Wu(University of Science and Technology of China), T. R. Wyatt(University of Manchester), B. M. Wynne(University of Edinburgh), S. Xella(University of Copenhagen), D. A. Maximov(University of Michigan), L. Xia(University of Warwick), D. Xu(Chinese Academy of Sciences), H. Xu(University of Science and Technology of China), L. Xu(Brookhaven National Laboratory), T. Xu(Commissariat à l'Énergie Atomique et aux Énergies Alternatives), W. Xu(University of Michigan), B. Yabsley(The University of Sydney), S. Yacoob(University of Cape Town), K. Yajima(The University of Osaka), D. P. Yallup(University College London), D. Yamaguchi(Tokyo Institute of Technology), Y. Yamaguchi(Tokyo Institute of Technology), A. Yamamoto(High Energy Accelerator Research Organization), Takeharu Yamanaka(The University of Tokyo), F. Yamane(Kobe University), M. Yamatani(The University of Tokyo), T. Yamazaki(The University of Tokyo), Y. Yamazaki(Kobe University), Z. Yan(Boston University), H. J. Yang(Lawrence Berkeley National Laboratory), H. Yang(Lawrence Berkeley National Laboratory), S. Yang(University of Iowa), Y. Yang(Institute of Physics, Academia Sinica), Y. Yang(Institute of Physics, Academia Sinica), Z. Yang(University of Bergen), W-M. Yao(Lawrence Berkeley National Laboratory), Y. C. Yap(Deutsches Elektronen-Synchrotron DESY), Y. Yasu(High Energy Accelerator Research Organization), E. Yatsenko(Centre National de la Recherche Scientifique), J. Ye(Southern Methodist University), S. Ye(Brookhaven National Laboratory), I. Yeletskikh(Joint Institute for Nuclear Research), E. Yigitbasi(Boston University), E. Yildirim(Johannes Gutenberg University Mainz), K. Yorita(Waseda University), K. Yoshihara(University of Pennsylvania), C. J. S. Young(SLAC National Accelerator Laboratory), C. Young(SLAC National Accelerator Laboratory), J. Yu(Iowa State University), J. Yu(Iowa State University), X. Yue(Heidelberg University), S. P. Y. Yuen(University of Bonn), I. Yusuff(University of Cambridge), B. Żabiński(Institute of Nuclear Physics, Polish Academy of Sciences), G. Zacharis(National Technical University of Athens), E. Zaffaroni(University of Geneva), R. Zaidan(Institute for High Energy Physics), A. M. Zaǐtsev(Institute for High Energy Physics), N. Zakharchuk(Deutsches Elektronen-Synchrotron DESY), J. Zalieckas(University of Bergen), S. Zambito(Harvard University), D. Zanzi(European Organization for Nuclear Research), D. R. Zaripovas(University of Glasgow), C. Zeitnitz(University of Wuppertal), G. Zemaityte(University of Oxford), J. C. Zeng(University of Illinois Urbana-Champaign), Q. Zeng(SLAC National Accelerator Laboratory), O. Zenin(Institute for High Energy Physics), D. Zerwas(Université Paris-Sud), M. Zgubič(University of Oxford), D. F. Zhang(Shandong University), D. F. Zhang(Shandong University), F. Zhang(University of Wisconsin–Madison), G. Zhang(University of Science and Technology of China), H. Zhang(Nanjing University), J. Zhang(Argonne National Laboratory), L. Zhang(University of Science and Technology of China), L. Zhang(University of Science and Technology of China), M. Zhang(University of Illinois Urbana-Champaign), P. Zhang(Nanjing University), R. Zhang(University of Science and Technology of China), R. Zhang(University of Science and Technology of China), X. Zhang(Shandong University), Y. Zhang(University of Chinese Academy of Sciences), Z. Zhang(Université Paris-Sud), Xiandong Zhao(Southern Methodist University), Y. Zhao(Université Paris-Sud), Z. Zhao(University of Science and Technology of China), A. Zhemchugov(Joint Institute for Nuclear Research), B. Zhou(University of Michigan), C. Zhou(University of Wisconsin–Madison), L. Zhou(Southern Methodist University), N. Zhou(University of Chinese Academy of Sciences), M. Zhou(University of Chinese Academy of Sciences), N. Zhou(Shanghai Jiao Tong University), Y. Zhou(University of Arizona), C. G. Zhu(Shandong University), H. L. Zhu(University of Science and Technology of China), H. Zhu(University of Science and Technology of China), J. Zhu(University of Michigan), Y. Zhu(University of Science and Technology of China), X. Zhuang(Chinese Academy of Sciences), K. Zhukov(P.N. Lebedev Physical Institute of the Russian Academy of Sciences), V. Zhulanov(Novosibirsk State University), A. Zibell(University of Würzburg), D. Zieminska(Indiana University Bloomington), N. I. Zimine(Joint Institute for Nuclear Research), S. Zimmermann(University of Freiburg), Z. Zinonos(Max Planck Institute for Physics), M. Zinser(Johannes Gutenberg University Mainz), M. Ziolkowski(University of Siegen), G. Zobernig(University of Wisconsin–Madison), A. Zoccoli(Osservatorio astronomico di Bologna), K. Zoch(University of Göttingen), T. G. Zorbas(University of Sheffield), Rui Zou(Fermi National Accelerator Laboratory), M. zur Nedden(Humboldt-Universität zu Berlin), L. Zwalinski(European Organization for Nuclear Research)
Physical Review Letters
August 22, 2018
Cited by 101Open Access
Full Text

Abstract

Searches for dijet resonances with sub-TeV masses using the ATLAS detector at the Large Hadron Collider can be statistically limited by the bandwidth available to inclusive single-jet triggers, whose data-collection rates at low transverse momentum are much lower than the rate from standard model multijet production. This Letter describes a new search for dijet resonances where this limitation is overcome by recording only the event information calculated by the jet trigger algorithms, thereby allowing much higher event rates with reduced storage needs. The search targets low-mass dijet resonances in the range 450-1800 GeV. The analyzed data set has an integrated luminosity of up to 29.3 fb^{-1} and was recorded at a center-of-mass energy of 13 TeV. No excesses are found; limits are set on Gaussian-shaped contributions to the dijet mass distribution from new particles and on a model of dark-matter particles with axial-vector couplings to quarks.


Related Papers

No related papers found

Powered by citation graph analysis