English

Gamma-ray burst afterglow blast waves

High Energy Astrophysical Phenomena 2018-10-17 v1

Abstract

The various stages of baryonic gamma-ray burst afterglow blast waves are reviewed. These are responsible for the afterglow emission from which much of our understanding of gamma-ray bursts derives. Initially, the blast waves are confined to the dense medium surrounding the burster (stellar envelope or dense wind), giving rise to a jet-cocoon structure. A massive ejecta is released and potentially fed by ongoing energy release from the burster and a forward-reverse shock system is set up between ejecta and ambient density. Ultimately the blast wave spreads sideways and slows down, and the dominant afterglow emission shifts from X-rays down to radio. Over the past years significant progress has been made both observationally and theoretically/numerically in our understanding of these blast waves, unique in the universe due to their often incredibly high initial Lorentz factors of 100-1000. The recent discovery of a short gamma-ray burst counterpart to a gravitational wave detection (GW 170817) brings the promise of a completely new avenue to explore and constrain the dynamics of gamma-ray burst blast waves.

Keywords

Cite

@article{arxiv.1801.01848,
  title  = {Gamma-ray burst afterglow blast waves},
  author = {Hendrik van Eerten},
  journal= {arXiv preprint arXiv:1801.01848},
  year   = {2018}
}

Comments

Invited review Int. J. Mod. Phys. D; Final accepted version

R2 v1 2026-06-22T23:37:38.917Z