Geometric integration of the Vlasov-Maxwell system with a variational particle-in-cell scheme

POSTER

Abstract

A fully variational, unstructured, electromagnetic particle-in-cell integrator is developed for integration of the Vlasov-Maxwell equations. Using the formalism of Discrete Exterior Calculus [1], the field solver, interpolation scheme and particle advance algorithm are derived through minimization of a single discrete field theory action. As a consequence of ensuring that the action is invariant under discrete electromagnetic gauge transformations, the integrator exactly conserves Gauss's law. This work was supported by USDOE Contract DE-AC02-09CH11466.\\[4pt] [1] M. Desbrun, A. N. Hirani, M. Leok, and J. E. Marsden, (2005), arXiv:math/0508341

Authors

  • J. Squire

    Princeton Plasma Physics Laboratory, PPPL

  • Hong Qin

    Princeton Plasma Physics Laboratory, Plasma Physics Laboratory, Princeton University and University of Science and Technology of China, Princeton University

  • William M. Tang

    Princeton Plasma Physics Laboratory