English

Particle dynamics in the electron current layer in collisionless magnetic reconnection

Solar and Stellar Astrophysics 2016-10-06 v2 Plasma Physics Space Physics

Abstract

Particle dynamics in the electron current layer in collisionless magnetic reconnection is investigated by using a particle-in-cell simulation. Electron motion and velocity distribution functions are studied by tracking self-consistent trajectories. New classes of electron orbits are discovered: figure-eight-shaped regular orbits inside the electron jet, noncrossing regular orbits on the jet flanks, noncrossing Speiser orbits, and nongyrotropic electrons in the downstream of the jet termination region. Properties of a super-Alfv\'{e}nic outflow jet are attributed to an ensemble of electrons traveling through Speiser orbits. Noncrossing orbits are mediated by the polarization electric field near the electron current layer. The noncrossing electrons are found to be non-negligible in number density. The impact of these new orbits to electron mixing, spatial distribution of energetic electrons, and observational signatures, is presented.

Keywords

Cite

@article{arxiv.1605.07472,
  title  = {Particle dynamics in the electron current layer in collisionless magnetic reconnection},
  author = {Seiji Zenitani and Tsugunobu Nagai},
  journal= {arXiv preprint arXiv:1605.07472},
  year   = {2016}
}

Comments

21 pages

R2 v1 2026-06-22T14:08:20.129Z