paper

The Peak Energy Distribution of the nu F_nu Spectra and the Implications for the Jet Structure Models of Gamma-Ray Bursts

arXiv:astro-ph/0403677 · doi:10.1086/422253

Abstract

We study the peak energy () distribution of the spectra of gamma-ray bursts (GRBs) and X-ray flashes (XRFs) with a sample of 57 bursts observed by {\em High Energy Transient Explorer 2} ({\em HETE-2}) French Gamma Telescope and discuss its implications for the jet structure models. Combining the observed distribution of {\em HETE--2} GRBs/XRFs with that of BATSE GRBs, we find that the observed distribution of GRBs/XRFs is a bimodal one with peaks of keV and keV. According to the recently-discovered equivalent-isotropic energy- relationship, such a bimodal distribution implies a two-component structure of GRB/XRF jets. A simple simulation analysis shows that this structured jet model does roughly reproduce a bimodal distribution with peaks of and keV. We argue that future observations of the peak of keV in the distribution would be evidence supporting this model. {\em Swift}, which covers an energy band of 0.2--150 keV, is expected to provide a key test for our results.

4 pages plus 2 figures, emulateapj style, ApJ Letters, 608, in press