The "amplitude" parameter of Gamma-Ray Bursts and its implications for GRB classification
Abstract
Traditionally gamma-ray bursts (GRBs) are classified in the -hardness ratio two-dimensional plane into long/soft and short/hard GRBs. In this paper, we suggest to add the "amplitude" of GRB prompt emission as the third dimension as a complementary criterion to classify GRBs, especially those of short durations. We define three new parameters , and as ratios between the measured/simulated peak flux of a GRB/pseudo-GRB and the flux background, and discuss the applications of these parameters to GRB classification. We systematically derive these parameters to find that most short GRBs are likely not "tip-of-iceberg" of long GRBs. However, one needs to be cautious if a short GRB has a relatively small (e.g. ), since the chance for an intrinsically long GRB to appear as a "disguised" short GRB is higher. Based on avaialble data, we quantify the probability of a disguised short GRB below a certain value is as . By progressively "moving" a long GRB to higher redshifts through simulations, we also find that most long GRBs would show up as rest-frame short GRBs above a certain redshift.
Cite
@article{arxiv.1211.1117,
title = {The "amplitude" parameter of Gamma-Ray Bursts and its implications for GRB classification},
author = {Hou-Jun Lü and Bing Zhang and En-Wei Liang and Bin-Bin Zhang and Takanori Sakamoto},
journal= {arXiv preprint arXiv:1211.1117},
year = {2015}
}
Comments
11 pages, 14 figures. Accepted by MNRAS