Article ID Journal Published Year Pages File Type
6931786 Journal of Computational Physics 2015 21 Pages PDF
Abstract
In this study, we extend the moment-based acceleration algorithm for the charge, momentum, and energy conserving Vlasov-Ampère discretization developed in Ref. [1] by including a reduced Fokker-Planck operator. We propose an energy conserving discretization for the Fokker-Planck collision operator. We show by numerical experiment that the new algorithm 1) efficiently converges the nonlinearly coupled Vlasov-Fokker-Planck-Ampère system, and 2) accurately steps over stiff time-scales such as the inverse electron plasma frequency, and the electron-electron collision time-scale. We demonstrate that discrete energy conservation is critical to eliminate numerical heating issues when strong density gradients exist.
Related Topics
Physical Sciences and Engineering Computer Science Computer Science Applications
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