English

Comment on "Nonideal Fields Solve the Injection Problem in Relativistic Reconnection"

High Energy Astrophysical Phenomena 2023-05-17 v1 Plasma Physics

Abstract

Recently, Sironi (PRL, 128, 145102; S22) reported the correlation between particles accelerated into high energy and their crossings of regions with electric field larger than magnetic field (E>B regions) in kinetic simulations of relativistic magnetic reconnection. They claim that electric fields in E>B regions (for a vanishing guide field) dominate in accelerating particles to the injection energy. S22 presented test-particle simulations showing that if particle energies are reset to low energies in E>B regions, efficient injection is suppressed. This Comment re-examines these claims by analyzing a simulation resembling the reference case in S22. We show that during crossings E>B acceleration only contributes a small fraction to the injection energy as E>B regions only host particles for a short duration. The energization before any E>B crossings has a comparable contribution, indicating E>B regions are not unique in pre-accelerating particles. A new test-particle simulation shows that zero-outing electric fields in E>B regions does not strongly influence the injection. We suggest that the procedure used in S22 to exclude E>B acceleration partly removes acceleration outside E>B regions, leading to a false conclusion.

Cite

@article{arxiv.2208.03435,
  title  = {Comment on "Nonideal Fields Solve the Injection Problem in Relativistic Reconnection"},
  author = {Fan Guo and Xiaocan Li and Omar French and William Daughton and William Matthaeus and Qile Zhang and Yi-Hsin Liu and Patrick Kilian and Grant Johnson and Hui Li},
  journal= {arXiv preprint arXiv:2208.03435},
  year   = {2023}
}

Comments

2 pages, 1 figure

R2 v1 2026-06-25T01:31:51.979Z