The X-ray afterglow of GRB 081109A: clue to the wind bubble structure
Abstract
We present the prompt BAT and afterglow XRT data of Swift-discovered GRB081109A up to ~ 5\times 10^5 sec after the trigger, and the early ground-based optical follow-ups. The temporal and spectral indices of the X-ray afterglow emission change remarkably. We interpret this as the GRB jet first traversing the freely expanding supersonic stellar wind of the progenitor with density varying as . Then after approximately 300 sec the jet traverses into a region of apparent constant density similar to that expected in the stalled-wind region of a stellar wind bubble or the interstellar medium (ISM). The optical afterglow data are generally consistent with such a scenario. Our best numerical model has a wind density parameter {, a density of the stalled wind , and a transition radius cm}. Such a transition radius is smaller than that predicted by numerical simulations of the stellar wind bubbles and may be due to a rapidly evolving wind of the progenitor close to the time of its core-collapse.
Cite
@article{arxiv.0903.4476,
title = {The X-ray afterglow of GRB 081109A: clue to the wind bubble structure},
author = {Z. P. Jin and D. Xu and S. Covino and P. D'Avanzo and A. Antonelli and Y. Z. Fan and D. M. Wei},
journal= {arXiv preprint arXiv:0903.4476},
year = {2015}
}
Comments
7 pages, 5 figures, 2 tables, MNRAS accepted for publication