paper

Revisiting the Long/Soft-Short/Hard Classification of Gamma-Ray Bursts in the Fermi Era

arXiv:1201.1549 · doi:10.1088/0004-637X/750/2/88

Abstract

We perform a statistical analysis of the temporal and spectral properties of the latest Fermi gamma-ray bursts (GRBs) to revisit the classification of GRBs. We find that the bimodalities of duration and the energy ratio (/Fluence) and the anti-correlation between spectral hardness (hardness ratio (), peak energy and spectral index) and duration () support the long/soft short/hard classification scheme for Fermi GRBs. The anti-correlation strongly depends upon the spectral shape of GRBs and energy bands, and the bursts with the curved spectra in the typical BATSE energy bands show a tighter anti-correlation than those with the power-law spectra in the typical BAT energy bands. This might explain why the correlation is not evident for those GRB samples detected by instruments like {\it Swift} with a narrower/softer energy bandpass. We also analyze the intrinsic energy correlation for the GRBs with measured redshifts and well defined peak energies. The current sample suggests for short GRBs, significantly different from that for long GRBs. However, both the long and short GRBs comply with the same correlation.

17 pages, 9 figures, 4 tables. Accepted for publication in ApJ

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