X-ray flares from dense shells formed in gamma-ray burst explosions
arXiv:1503.08333 · doi:10.1093/mnrasl/slx143
Abstract
Bright X-ray flares are routinely detected by the Swift satellite during the early afterglow of gamma-ray bursts, when the explosion ejecta drives a blast wave into the external medium. We suggest that the flares are produced as the reverse shock propagates into the tail of the ejecta. The ejecta is expected to contain a few dense shells formed at an earlier stage of the explosion. We show an example of how such dense shells form and describe how the reverse shock interacts with them. A new reflected shock is generated in this interaction, which produces a short-lived X-ray flare. The model provides a natural explanation for the main observed features of the X-ray flares --- the fast rise, the steep power-law decline, and the characteristic peak duration Δt /t= (0.1-0.3).
5 pages, 3 figures
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- A detailed radio study of the energetic, nearby and puzzling GRB 171010A
- Flares in gamma-ray burst X-ray afterglows as prompt emission from slightly misaligned structured jets
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