Recent Progress on Particle Acceleration and Reconnection Physics during Magnetic Reconnectionin the Magnetically-dominated Relativistic Regime
Abstract
Magnetic reconnection in strongly magnetized astrophysical plasma environments is believed to be the primary process for fast energy release and particle energization. Currently there is strong interest in relativistic magnetic reconnection, in that it may provide a new explanation for high-energy particle acceleration and radiation in strongly magnetized astrophysical systems. We review recent advances in particle acceleration and reconnection physics in the magnetically-dominated regime. More discussion is focused on the physics of particle acceleration, power-law formation as well as the reconnection rate problem. In addition, we provide an outlook for studying reconnection acceleration mechanisms and kinetic physics in the next step.
Keywords
Cite
@article{arxiv.2006.15288,
title = {Recent Progress on Particle Acceleration and Reconnection Physics during Magnetic Reconnectionin the Magnetically-dominated Relativistic Regime},
author = {Fan Guo and Yi-Hsin Liu and Xiaocan Li and Hui Li and William Daughton and Patrick Kilian},
journal= {arXiv preprint arXiv:2006.15288},
year = {2020}
}
Comments
review paper to appear in Physics of Plasmas. Resubmit after incorporating reviewers' comments