English

Neutrino Cooled disk in GRB central engine

Astrophysics 2009-11-13 v2

Abstract

At the extreme densities and temperatures typical of the central engine of GRBs, the accreting torus is cooled mainly by advection and by neutrino emission. The latter process is dominated by electron and positron capture onto nucleons (β\beta reactions). We calculate the reaction rates and the nuclear composition of matter, assuming that the torus consists of helium, eletron-positron pairs, free neutrons and protons. After determining the equation of state and solving for the disk structure for a given initial accretion rate, we subsequently follow its time evolution. We find that, for accretion rates of the order of 10M10 M_{\odot}/s, likely typical for the early stages of the accretion event, the disk becomes unstable, giving rise to variable energy output. This instability may play an important role for producing internal shocks.

Keywords

Cite

@article{arxiv.astro-ph/0507205,
  title  = {Neutrino Cooled disk in GRB central engine},
  author = {A. Janiuk and Y. Yuan and R. Perna and T. DiMatteo},
  journal= {arXiv preprint arXiv:astro-ph/0507205},
  year   = {2009}
}

Comments

4 pages, 3 figures; to appear in Proceedings of the Conference "Astrophysical Sources of High Energy Particles and Radiation", held in Torun, Poland, 20-24 June 2005