Implicit and electrostatic Particle-in-cell/Monte Carlo model in two dimensional and axisymmetric geometry I: analysis of numerical techniques
Plasma Physics
2011-04-19 v2 Computational Physics
Abstract
We developed an implicit Particle-in-cell/Monte Carlo model in two-dimensional and axisymmetric geometry for the simulations of the radio-frequency discharges, by introducing several numerical schemes which include variable weights, multigrid field solver, etc. Compared to the standard explicit models, we found that the computational efficiency is significantly increased and the accuracy is still kept. Numerical schemes are discussed and benchmark results are shown. The code can be used to simulate practical reactors.
Keywords
Cite
@article{arxiv.1001.2969,
title = {Implicit and electrostatic Particle-in-cell/Monte Carlo model in two dimensional and axisymmetric geometry I: analysis of numerical techniques},
author = {Hong-yu Wang and Wei Jiang and You-nian Wang},
journal= {arXiv preprint arXiv:1001.2969},
year = {2011}
}
Comments
accepted by Plasma Source Sci. Tech