English

Variational principle for the parallel-symplectic representation of electromagnetic gyrokinetic theory

Plasma Physics 2017-09-13 v2

Abstract

The nonlinear (full-ff) electromagnetic gyrokinetic Vlasov-Maxwell equations are derived in the parallel-symplectic representation from an Eulerian gyrokinetic variational principle. The gyrokinetic Vlasov-Maxwell equations are shown to possess an exact energy conservation law, which is derived by Noether method from the gyrokinetic variational principle. Here, the gyrocenter Poisson bracket and the gyrocenter Jacobian contain contributions from the perturbed magnetic field. In the full-ff formulation of the gyrokinetic Vlasov-Maxwell theory presented here, the gyrocenter parallel-Amp\`{e}re equation contains a second-order contribution to the gyrocenter current density that is derived from the second-order gyrocenter ponderomotive Hamiltonian.

Keywords

Cite

@article{arxiv.1702.04747,
  title  = {Variational principle for the parallel-symplectic representation of electromagnetic gyrokinetic theory},
  author = {Alain J. Brizard},
  journal= {arXiv preprint arXiv:1702.04747},
  year   = {2017}
}

Comments

15 pages. Revised manuscript submitted to the special issue of Physics of Plasmas in honor of W.W. Lee