English

Thermal Electrons in GRB Afterglows

High Energy Astrophysical Phenomena 2018-11-27 v3

Abstract

To date, nearly all multi-wavelength modeling of long-duration gamma-ray bursts has ignored synchrotron radiation from the significant population of electrons expected to pass the shock without acceleration into a power-law distribution. We investigate the effect of including the contribution of thermal, non-accelerated electrons to synchrotron absorption and emission in the standard afterglow model, and show that these thermal electrons provide an additional source of opacity to synchrotron self-absorption, and yield an additional emission component at higher energies. The extra opacity results in an increase in the synchrotron self-absorption frequency by factors of 10--100 for fiducial parameters. The nature of the additional emission depends on the details of the thermal population, but is generally observed to yield a spectral peak in the optical brighter than radiation from the nonthermal population by similar factors a few seconds after the burst, remaining detectable at millimeter and radio frequencies several days later.

Keywords

Cite

@article{arxiv.1706.01885,
  title  = {Thermal Electrons in GRB Afterglows},
  author = {Sean M. Ressler and Tanmoy Laskar},
  journal= {arXiv preprint arXiv:1706.01885},
  year   = {2018}
}

Comments

5 Figures, accepted to ApJ. Comments welcome

R2 v1 2026-06-22T20:10:55.926Z