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Unsteady Outflow Models for Cosmological Gamma-Ray Bursts

Astrophysics 2009-10-22 v1

Abstract

The 'event' that triggers a gamma ray burst cannot last for more than a few seconds. This is, however, long compared with the dynamical timescale of a compact stellar-mass object (103\sim 10^{-3} seconds). Energy is assumed to be released as an outflow with high mean lorentz factor Γ\Gamma. But a compact stellar-mass collapse or merger is, realistically, likely to generate a mass (or energy) flux that is unsteady on some timescales in the range 10310^{-3} - 10 seconds. If Γ\Gamma fluctuates by a factor of 2\sim 2 around its mean value, relative motions within the outflowing material will themselves (in the comoving frame) be relativistic, and can give rise to internal shocks. For Γ102\Gamma \sim 10^2, the resultant dissipation occurs outside the 'photosphere' and can convert a substantial fraction of the overall outflow energy into non-thermal radiation. This suggests a mechanism for cosmological bursts that demands less extreme assumptions (in respect of Γ\Gamma-values, freedom from baryonic contamination, etc) than earlier proposals.

Keywords

Cite

@article{arxiv.astro-ph/9404038,
  title  = {Unsteady Outflow Models for Cosmological Gamma-Ray Bursts},
  author = {M. J. Rees and P. Meszaros},
  journal= {arXiv preprint arXiv:astro-ph/9404038},
  year   = {2009}
}

Comments

7 pages, plain TeX