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Novel Techniques for Modeling of Laser-Plasma Interactions in Particle-In-Cell Codes for Use in Hohlraum Simulations

2016 43RD IEEE INTERNATIONAL CONFERENCE ON PLASMA SCIENCE (ICOPS)(2016)

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Key words
time evolution,density gradient,traditional kinetic PIC method,nonlinear laser-plasma interactions,fluid species,fast quasineutral algorithms,collisional absorption process,thin blowoff plasma,hohlraum modeling,two-tiered approach,fully kinetic simulation,hot electron generation,laser wavelength,ray-tracing technique,hybrid particle-in-cell code,large-scale hohlraum simulation,target implosion,suprathermal electrons,plasmon decay,nonlinear laser plasma interactions,laser energy,hohlraum interior,hot ablated plasma,primary heating mechanism,pulse lengths,laser beams,NIF hohlraum gold walls,laser-plasma interaction modeling,electron distribution function,time 1 ns,Au
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