Shock Hugoniot Data for Water up to 5 Mbar Obtained with Quartz Standard at High-Energy Laser Facilities
D. Mancelli(Centre National de la Recherche Scientifique), D. Batani(Université de Bordeaux), P. Neumayer(GSI Helmholtz Centre for Heavy Ion Research), Norimasa Ozaki(The University of Osaka), Yoshitomo Maeda(Japan Aerospace Exploration Agency), E. Filippov(Joint Institute for High Temperatures), Yoichiro Hironaka(Institute for Laser Technology), Daisuke Kamibayashi(The University of Osaka), O. Turianska(Centre National de la Recherche Scientifique), Hiroshi Ogura(Osaka University), Ion Errea(University of the Basque Country), O. Rosmej(Goethe University Frankfurt), H. Larreur(Centre National de la Recherche Scientifique), N. Kamimura, G. Schaumann(Technische Universität Darmstadt), С. А. Пикуз(Joint Institute for High Temperatures), B. Zielbauer(GSI Helmholtz Centre for Heavy Ion Research), K. Batani(Institute of Plasma Physics and Laser Microfusion), Koki Ishida(The University of Osaka), K. Kawasaki(The University of Osaka), Kento Katagiri(The University of Osaka), A. Tentori(Politecnico di Milano), A. S. Martynenko(Joint Institute for High Temperatures), K. Shigemori(The University of Osaka)
Cited by 3
Related Papers
36th International Symposium on Intensive Care and Emergency Medicine
|Critical Care|2016|526
Bright Laser-Driven Neutron Source Based on the Relativistic Transparency of Solids
|Physical Review Letters|2013|368
Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
|Nature Communications|2016|251
Formation of diamonds in laser-compressed hydrocarbons at planetary interior conditions
|Nature Astronomy|2017|237
Present and future perspectives for high energy density physics with intense heavy ion and laser beams
|Laser and Particle Beams|2005|236