Title :
Quiet direct simulation of Coulomb collisions
Author :
Albright, Brian J. ; Winske, Dan ; Lemons, Don S. ; Daughton, William ; Jones, Michael E.
Author_Institution :
Plasma Phys. Group, Los Alamos Nat. Lab., NM, USA
fDate :
2/1/2003 12:00:00 AM
Abstract :
Quiet direct simulation Monte Carlo (QDSMC) is a new particle simulation technique that is applicable to a broad range of applications where the underlying system dynamics obey Fokker Planck equations. These include hydrodynamics, radiation transport, magnetohydrodynamics, diffusion, and collisional kinetic plasmas. At the beginning of each time step in QDSMC, the weights and abscissas of Gaussian-Hermite quadrature are used to deterministically create particles to sample the random process. At the end of the time step, particles are gathered to the computational mesh to obtain updated distributions of conserved quantities on the mesh and then the particles are destroyed. The creation and destruction of particles allows arbitrary dynamical range to be accessed quiescently with only a small number of particles per computational cell. The application of QDSMC to the simulation of Coulomb collisions is considered in this report, and the method is demonstrated on problems involving the collisional relaxation of non-Maxwellian distributions.
Keywords :
Fokker-Planck equation; Monte Carlo methods; digital simulation; mesh generation; plasma collision processes; plasma simulation; Coulomb collisions; Fokker Planck equations; Gaussian-Hermite quadrature; Monte Carlo particle simulation technique; collisional kinetic plasmas; collisional relaxation; deterministic particle creation; diffusion; dynamical range; hydrodynamics; magnetohydrodynamics; nonMaxwellian distributions; quiet direct simulation; radiation transport; random process; system dynamics; Equations; Gaussian processes; Hydrodynamics; Kinetic theory; Magnetohydrodynamics; Monte Carlo methods; Plasma applications; Plasma simulation; Plasma transport processes; Random processes;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2003.808886