The KEDR detector
В.В. Анашин(Russian Academy of Sciences), V. Aulchenko(Russian Academy of Sciences), E. M. Baldin(Russian Academy of Sciences), A.K. Barladyan(Russian Academy of Sciences), A. Barnyakov(Russian Academy of Sciences), M.Yu. Barnyakov(Russian Academy of Sciences), S.E. Baru(Novosibirsk State University), I.Yu. Basok(Russian Academy of Sciences), I.V. Bedny(Russian Academy of Sciences), O. Beloborodova(Russian Academy of Sciences), A. E. Blinov(Russian Academy of Sciences), V. E. Blinov(Russian Academy of Sciences), A. V. Bobrov(Russian Academy of Sciences), V. S. Bobrovnikov(Russian Academy of Sciences), A. Bondar(Novosibirsk State University), А. Р. Бузыкаев(Russian Academy of Sciences), A.I. Vorobiov(Russian Academy of Sciences), V.V. Gulevich(Russian Academy of Sciences), L. Dneprovsky(Russian Academy of Sciences), V. Zhilich(Russian Academy of Sciences), V.V. Zhulanov(Russian Academy of Sciences), Г. В. Карпов(Russian Academy of Sciences), С. Карпов(Russian Academy of Sciences), S.A. Kononov(Russian Academy of Sciences), Khristian Kotov(Russian Academy of Sciences), E. A. Kravchenko(Novosibirsk State University), V. Kudryavtsev(Russian Academy of Sciences), Alexander Kuzmin(Russian Academy of Sciences), V. Kulikov(Novosibirsk State University), E.A. Kuper(Russian Academy of Sciences), E. Levichev(Russian Academy of Sciences), D.A. Maksimov(Russian Academy of Sciences), В. М. Малышев(Russian Academy of Sciences), A. L. Maslennikov(Russian Academy of Sciences), A.S. Medvedko(Novosibirsk State University), N. Yu. Muchnoi(Russian Academy of Sciences), S. A. Nikitin(Russian Academy of Sciences), I. B. Nikolaev(Novosibirsk State University), A. P. Onuchin(Russian Academy of Sciences), S.B. Oreshkin(Russian Academy of Sciences), I.O. Orlov(Novosibirsk State University), A. А. Osipov(Russian Academy of Sciences), S. V. Peleganchuk(Russian Academy of Sciences), S.G. Pivovarov(Novosibirsk State Technical University), A. Poluektov(Russian Academy of Sciences), Г. Е. Поспелов(Russian Academy of Sciences), V.G. Prisekin(Russian Academy of Sciences), V.A. Rodyakin(Russian Academy of Sciences), A.A. Ruban(Russian Academy of Sciences), G.A. Savinov(Russian Academy of Sciences), Yu. I. Skovpen(Russian Academy of Sciences), A.N. Skrinsky(Russian Academy of Sciences), Victor Smalyuk(Russian Academy of Sciences), R. Snopkov(Russian Academy of Sciences), A. Sokolov(Russian Academy of Sciences), A.M. Sukharev(Russian Academy of Sciences), A.A. Talyshev(Russian Academy of Sciences), V.A. Tayursky(Russian Academy of Sciences), V. I. Telnov(Russian Academy of Sciences), Yu. A. Tikhonov(Novosibirsk State University), K. Yu. Todyshev(Russian Academy of Sciences), Y. Usov(Russian Academy of Sciences), T. Kharlamova(Russian Academy of Sciences), A.G. Shamov(Russian Academy of Sciences), B.A. Shwartz(Russian Academy of Sciences), L. Shekhtman(Russian Academy of Sciences), A.I Shusharo(Russian Academy of Sciences), A. N. Yushkov(Russian Academy of Sciences)
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Abstract
The KEDR detector is a universal magnetic detector designed for studying the c- and b-quarks and two-photon physics, and is employed at the VEPP-4M e + e − collider. A specific feature of the experiment is the measurement of absolute beam energy using two methods: the resonant depolarization and the faster but less precise Compton backscattering of laser photons. This allowed a large series of measurements to be performed, in which the accuracy of determination of such fundamental parameters of particles as mass and total and leptonic widths was improved.
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