English

Synchrotron radiation from electrons with a pitch-angle distribution

High Energy Astrophysical Phenomena 2018-09-05 v1

Abstract

In most astrophysical processes involving synchrotron radiation, the pitch-angle distribution of the electrons is assumed to be isotropic. However, if electrons are accelerated anisotropically, e.g, in a relativistic shock wave with an ordered magnetic field or in magnetic reconnection regions, the electron pitch angles might be anisotropic. In this work, we study synchrotron radiation from electrons with a pitch-angle distribution with respect to a large-scale uniform magnetic field. Assuming that the pitch-angle distribution is normal with a scatter of σp\sigma_p and that the viewing direction is where the pitch-angle direction peaks, we find that for electrons with a Lorentz factor γ\gamma, the observed flux satisfies Fνν2/3F_\nu\propto\nu^{2/3} for ννcr\nu\ll\nu_{\rm cr} (νcr\nu_{\rm cr} is the critical frequency of synchrotron), if σp1/γ\sigma_p\lesssim1/\gamma is satisfied. On the other hand, if σp1/γ\sigma_p\gg1/\gamma, the spectrum below νcr\nu_{\rm cr} is a broken power law with a break frequency νbr2νcr/σp3γ3\nu_{\rm br}\sim2\nu_{\rm cr}/\sigma_p^3\gamma^3, e.g., Fνν2/3F_\nu\propto\nu^{2/3} for ννbr\nu\ll\nu_{\rm br} and Fνν1/3F_\nu\propto\nu^{1/3} for νbrννcr\nu_{\rm br}\ll\nu\ll\nu_{\rm cr}. Thus the ultimate synchrotron line of death is Fνν2/3F_\nu\propto\nu^{2/3}. We discuss the application of this theory to blazars and gamma-ray bursts (GRBs).

Keywords

Cite

@article{arxiv.1808.05170,
  title  = {Synchrotron radiation from electrons with a pitch-angle distribution},
  author = {Yuan-Pei Yang and Bing Zhang},
  journal= {arXiv preprint arXiv:1808.05170},
  year   = {2018}
}

Comments

6 pages, 5 figures, accepted for publication in ApJL

R2 v1 2026-06-23T03:34:50.078Z