English

Efficient Fourier Basis Particle Simulation

Plasma Physics 2019-09-04 v3 Computational Physics

Abstract

The standard particle-in-cell algorithm suffers from grid heating. There exists a gridless alternative which bypasses the deposition step and calculates each Fourier mode of the charge density directly from the particle positions. We show that a gridless method can be computed efficiently through the use of an Unequally Spaced Fast Fourier Transform (USFFT) algorithm. After a spectral field solve, the forces on the particles are calculated via the inverse USFFT (a rapid solution of an approximate linear system). We provide one and two dimensional implementations of this algorithm with an asymptotic runtime of O(Np+NmDlogNmD)O(N_p + N_m^D \log N_m^D) for each iteration, identical to the standard PIC algorithm (where NpN_p is the number of particles and NmN_m is the number of Fourier modes, and DD is the spatial dimensionality of the problem) We demonstrate superior energy conservation and reduced noise, as well as convergence of the energy conservation at small time steps.

Keywords

Cite

@article{arxiv.1808.03742,
  title  = {Efficient Fourier Basis Particle Simulation},
  author = {Matthew S. Mitchell and Matthew T. Miecnikowski and Gregory Beylkin and Scott E. Parker},
  journal= {arXiv preprint arXiv:1808.03742},
  year   = {2019}
}

Comments

17 pages, 12 figures

R2 v1 2026-06-23T03:30:36.872Z