English

Electron acceleration in a nonrelativistic shock with very high Alfv\'en Mach number

High Energy Astrophysical Phenomena 2015-06-17 v1 Plasma Physics

Abstract

Electron acceleration associated with various plasma kinetic instabilities in a nonrelativistic, very-high-Alfv\'en Mach-number (MA45M_A \sim 45) shock is revealed by means of a two-dimensional fully kinetic PIC simulation. Electromagnetic (ion Weibel) and electrostatic (ion-acoustic and Buneman) instabilities are strongly activated at the same time in different regions of the two-dimensional shock structure. Relativistic electrons are quickly produced predominantly by the shock surfing mechanism with the Buneman instability at the leading edge of the foot. The energy spectrum has a high-energy tail exceeding the upstream ion kinetic energy accompanying the main thermal population. This gives a favorable condition for the ion acoustic instability at the shock front, which in turn results in additional energization. The large-amplitude ion Weibel instability generates current sheets in the foot, implying another dissipation mechanism via magnetic reconnection in a three-dimensional shock structure in the very-high-MAM_A regime.

Keywords

Cite

@article{arxiv.1310.8367,
  title  = {Electron acceleration in a nonrelativistic shock with very high Alfv\'en Mach number},
  author = {Y. Matsumoto and T. Amano and M. Hoshino},
  journal= {arXiv preprint arXiv:1310.8367},
  year   = {2015}
}