English

Early Afterglows in Wind Environments Revisited

Astrophysics 2009-11-13 v1

Abstract

When a cold shell sweeps up the ambient medium, a forward shock and a reverse shock will form. We analyze the reverse-forward shocks in a wind environment, including their dynamics and emission. An early afterglow is emitted from the shocked shell, e.g., an optical flash may emerge. The reverse shock behaves differently in two approximations: relativistic and Newtonian cases, which depend on the parameters, e.g., the initial Lorentz factor of the ejecta. If the initial Lorentz factor is much less than 114E531/4Δ0,121/4A,11/4114 E_{53}^{1/4} \Delta_{0,12}^{-1/4} A_{*,-1}^{-1/4}, the early reverse shock is Newtonian. This may take place for the wider of a two-component jet, an orphan afterglow caused by a low initial Lorentz factor, and so on. The synchrotron self absorption effect is significant especially for the Newtonian reverse shock case, since the absorption frequency νa\nu_a is larger than the cooling frequency νc\nu_c and the minimum synchrotron frequency νm\nu_m for typical parameters. For the optical to X-ray band, the flux is nearly unchanged with time during the early period, which may be a diagnostic for the low initial Lorentz factor of the ejecta in a wind environment. We also investigate the early light curves with different wind densities, and compare them with these in the ISM model.

Cite

@article{arxiv.astro-ph/0508602,
  title  = {Early Afterglows in Wind Environments Revisited},
  author = {Y. C. Zou and X. F. Wu and Z. G. Dai},
  journal= {arXiv preprint arXiv:astro-ph/0508602},
  year   = {2009}
}

Comments

14 pages, 7 figures, 2 tables, accepted for publication in MNRAS

R2 v1 2026-07-22T08:56:35.113Z