Beta decay radiation signature from neutron-rich gamma-ray bursts?
Abstract
Core collapse of massive stars and binary neutron stars or black hole-neutron star binary mergers are likely progenitors of long and short duration gamma-ray bursts respectively. Neutronized material in the former and neutron star material in the latter are ejected by the central engine implying a neutron-rich jet outflow. A free neutron, however, beta decays to a proton, an electron (beta) and an anti-neutrino in about fifteen minutes in its rest frame. Sudden creation of a relativistic electron is accompanied by radiation with unique temporal and spectral signature. We calculate here this radiation signature collectively emitted by all beta decay electrons from neutron-rich outflow. Detection of this signature may thus provide strong evidence for not only neutron but also for proton content in the relativistic gamma-ray burst jets.
Cite
@article{arxiv.astro-ph/0603322,
title = {Beta decay radiation signature from neutron-rich gamma-ray bursts?},
author = {Soebur Razzaque and Peter Meszaros},
journal= {arXiv preprint arXiv:astro-ph/0603322},
year = {2007}
}
Comments
11 pages, 2 figures, reference added, published version