Radiation-Hydrodynamic Simulation of Experiments With Intense Lasers Generating Collisionless Interpenetrating Plasmas
Michael Grosskopf(University of Michigan), N. C. Woolsey(University of York), Brian Reville(University of Oxford), G. Gregori, A. Bell, Anatoly Spitkovsky(Princeton University), C. D. Murphy(University of Oxford), J. Meinecke(University of Oxford), H. Takabe(Institute for Laser Technology), R. P. Drake(University of Michigan), B. A. Remington(Lawrence Livermore National Laboratory), N. L. Kugland(Lam Research (Austria)), M. Kœnig(Centre National de la Recherche Scientifique), Edison Liang(Lawrence Livermore National Laboratory), J. S. Ross(Lawrence Livermore National Laboratory), Francesco Miniati(ETH Zurich), Yasuhiro Kuramitsu(The University of Osaka), Y. Sakawa(The University of Osaka), A. Ravasio(École Polytechnique), G. Fiksel(University of Wisconsin–Madison), D. H. Froula(Energetics (United States)), Carolyn Kuranz(University of Michigan), H. Park, S. M. Pollaine, L. Gargaté(Rutherford Appleton Laboratory)
AAS
May 1, 2012
Cited by 1
Related Papers
Self-consistent growth rate of the Rayleigh–Taylor instability in an ablatively accelerating plasma
|The Physics of Fluids|1985|505
Observation of magnetic field generation via the Weibel instability in interpenetrating plasma flows
|Nature Physics|2015|307
Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
|Nature Communications|2016|251
Beat-wave excitation of plasma wave and observation of accelerated electrons
|Physical Review Letters|1992|216