Accurate modeling of plasma acceleration with arbitrary order pseudo-spectral particle-in-cell methods
Abstract
Particle in Cell (PIC) simulations are a widely used tool for the investigation of both laser- and beam-driven plasma acceleration. It is a known issue that the beam quality can be artificially degraded by numerical Cherenkov radiation (NCR) resulting primarily from an incorrectly modeled dispersion relation. Pseudo-spectral solvers featuring infinite order stencils can strongly reduce NCR, or even suppress it, and are therefore well suited to correctly model the beam properties. For efficient parallelization of the PIC algorithm, however, localized solvers are inevitable. Arbitrary order pseudo-spectral methods provide this needed locality. Yet, these methods can again be prone to NCR. Here, we show that acceptably low solver orders are sufficient to correctly model the physics of interest, while allowing for parallel computation by domain decomposition.
Keywords
Cite
@article{arxiv.1611.05712,
title = {Accurate modeling of plasma acceleration with arbitrary order pseudo-spectral particle-in-cell methods},
author = {Sören Jalas and Irene Dornmair and Rémi Lehe and Henri Vincenti and Jean-Luc Vay and Manuel Kirchen and Andreas R. Maier},
journal= {arXiv preprint arXiv:1611.05712},
year = {2017}
}