Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session CP11: Poster Session II: Basic Plasma Physics; Boundary, PMI, Proto-MPEX; International Tokamaks; Turbulence and Transport; Other Configurations; Z-pinch, Dense Plasma Focus and MagLIF (2:00pm-5:00pm)
Monday, November 5, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.CP11.47
Abstract: CP11.00047 : Particle Simulation in Fourier Space
Presenter:
Matthew Stephen Mitchell
(Univ of Colorado - Boulder)
Authors:
Matthew Stephen Mitchell
(Univ of Colorado - Boulder)
Matthew T Miecnikowski
(Univ of Colorado - Boulder)
Scott Edward Parker
(Univ of Colorado - Boulder)
Gregory Beylkin
(Univ of Colorado - Boulder)
The standard particle-in-cell algorithm suffers from finite grid effects which break energy conservation, cause numerical dispersion, and create numerical instabilities. We present a gridless alternative, bypassing the deposition step and calculating each Fourier mode of the charge density directly from the particle positions. This can be done efficiently through the use of an Unequally Spaced Fast Fourier Transform (USFFT) algorithm [1,2]. After a spectral field solve, the forces on the particles are calculated via the inverse USFFT (a rapid solution of an approximate linear system). The asymptotic runtime of this approach is O(Np + Nm log Nm) for each iteration, identical to the standard PIC algorithm (where Np is the number of particles and Nm is the number of modes). We provide implementations of this algorithm and apply them to several test cases, demonstrating comparable performance and identical scaling, as well as superior energy conservation and elimination of the finite grid instability. We prove energy conservation in the continuous-time limit, as well as momentum conservation.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.CP11.47
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