Hydrodynamics of a Relativistic Fireball: the Complete Evolution
Abstract
We study numerically the evolution of an adiabatic relativistic fireball expanding into a cold uniform medium. We follow the stages of initial free expansion and acceleration, coasting and then deceleration and slowing down to a non-relativistic velocity. We compare the numerical results with simplified analytical estimates. We show that the relativistic self similar Blandford-McKee solution describes well the relativistic deceleration epoch. It is an excellent approximation throughout the relativistic deceleration stage, down to , and a reasonable approximation even down to though the solution is rigorous only for . We examine the transition into the Blandford-McKee solution, and the transition from the solution to the non-relativistic self similar Sedov-Taylor solution. These simulations demonstrate the attractive nature of the Blandford-McKee solution and its stability to radial perturbations.
Cite
@article{arxiv.astro-ph/9803217,
title = {Hydrodynamics of a Relativistic Fireball: the Complete Evolution},
author = {Shiho Kobayashi and Tsvi Piran and Re'em Sari},
journal= {arXiv preprint arXiv:astro-ph/9803217},
year = {2009}
}
Comments
Submitted to ApJ, 35 pages, latex, 14 figures