English

Compton Scattering of Self-Absorbed Synchrotron Emission

High Energy Astrophysical Phenomena 2015-06-04 v3

Abstract

Synchrotron self-Compton (SSC) scattering is an important emission mechanism in many astronomical sources, such as gamma-ray bursts (GRBs) and active galactic nuclei (AGNs). We give a complete presentation of the analytical approximations for the Compton scattering of synchrotron emission with both weak and strong synchrotron self-absorption. All possible orders of the characteristic synchrotron spectral breaks (νa\nu_{\rm a}, νm\nu_{\rm m}, and νc\nu_{\rm c}) are studied. In the weak self-absorption regime, i.e., νa<νc\nu_{\rm a} < \nu_c, the electron energy distribution is not modified by the self-absorption process. The shape of the SSC component broadly resembles that of synchrotron, but with the following features: The SSC flux increases linearly with frequency up to the SSC break frequency corresponding to the self-absorption frequency νa\nu_{\rm a}; and the presence of a logarithmic term in the high-frequency range of the SSC spectra makes it harder than the power-law approximation. In the strong absorption regime, i.e. νa>νc\nu_{\rm a} > \nu_{\rm c}, heating of low energy electrons due to synchrotron absorption leads to pile-up of electrons, and form a thermal component besides the broken power-law component. This leads to two-component (thermal + non-thermal) spectra for both the synchrotron and SSC spectral components. For νc<νa<νm\nu_{\rm c} < \nu_{\rm a} < \nu_{\rm m}, the spectrum is thermal (non-thermal) -dominated if νa>νmνc\nu_a > \sqrt{\nu_m \nu_c} (νa<νmνc\nu_a < \sqrt{\nu_m \nu_c}). Similar to the weak-absorption regime, the SSC spectral component is broader than the simple broken power law approximation. We derive the critical condition for strong absorption (electron pile-up), and discuss a case of GRB reverse shock emission in a wind medium, which invokes νa>max(νm,νc)\nu_{\rm a} > {\rm max} (\nu_{\rm m}, \nu_{\rm c}).

Keywords

Cite

@article{arxiv.1204.1386,
  title  = {Compton Scattering of Self-Absorbed Synchrotron Emission},
  author = {He Gao and Wei-Hua Lei and Xue-Feng Wu and Bing Zhang},
  journal= {arXiv preprint arXiv:1204.1386},
  year   = {2015}
}

Comments

Accepted for publication in MNRAS

R2 v1 2026-06-21T20:45:33.647Z