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Advances in petascale kinetic plasma simulation with VPIC and Roadrunner

Journal of Physics Conference Series · 2009 · Vol. 180 · pp. 012055–012055
K. J. BowersB. J. AlbrightL. YinW. DaughtonV. RoytershteynBenjamin BergenT. J. T. Kwan

Abstract

VPIC, a first-principles 3d electromagnetic charge-conserving relativistic kinetic particle-in-cell (PIC) code, was recently adapted to run on Los Alamos's Roadrunner, the first supercomputer to break a petaflop (10{sup 15} floating point operations per second) in the TOP500 supercomputer performance rankings. They give a brief overview of the modeling capabilities and optimization techniques used in VPIC and the computational characteristics of petascale supercomputers like Roadrunner. They then discuss three applications enabled by VPIC's unprecedented performance on Roadrunner: modeling laser plasma interaction in upcoming inertial confinement fusion experiments at the National Ignition Facility (NIF), modeling short pulse laser GeV ion acceleration and modeling reconnection in magnetic confinement fusion experiments.

Laser-Plasma Interactions and DiagnosticsHigh-pressure geophysics and materialsMagnetic confinement fusion researchSupercomputerPetascale computingPlasmaComputer sciencePhysicsNuclear engineeringComputational scienceParallel computingNuclear physicsEngineering

Funding

  • U.S. Department of Energy
  • National Nuclear Security Administration
  • Laboratory Directed Research and Development
  • Los Alamos National Laboratory
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Advances in petascale kinetic plasma simulation with VPIC and Roadrunner · Scinovex