Comptonization signatures in the prompt emission of Gamma Ray Bursts
arXiv:1311.1998 · doi:10.1088/0004-637X/779/2/175
Abstract
We report results of a systematic study of the broad--band (2--2000 keV) time--resolved prompt emission spectra of a sample of Gamma-Ray Bursts (GRBs) detected with both the Wide Field Cameras (WFCs) aboard the BeppoSAX satellite and the BATSE experiment aboard CGRO. The main goal of the paper is to test spectral models of the GRB prompt emission that have recently been proposed. In particular, we test the photospheric model proposed by Ryde and Pe'er (2009), i.e., blackbody plus power--law, the addition of a blackbody emission to the Band function in the cases in which this function does not fit the data, and the Comptonization model developed by Titarchuk et al. (2012). By considering the few spectra for which the simple Band function does not provide a fully acceptable fit to the data (Frontera et al. 2012), only in one case we find a statistically significant better fit by adding a blackbody to this function. We confirm the results found fitting the BATSE spectra alone with a blackbody plus a power law. Instead when the BATSE GRB spectra are joined to those obtained with WFCs (2--28 keV), this model becomes unacceptable in most of time intervals in which we subdivide the GRB light curves. We find instead that the Comptonization model is always acceptable, even in the few cases in which the Band function is inconsistent with the data. We discuss the implications of these results.
52 pages, 18 figures, published in The Astrophysical Journal Volume 779, Issue 2, article id. 175, 21 pp. (2013)
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- Prospects for multi-messenger extended emission from core-collapse supernovae in the Local Universe
- Some Implications of inverse-Compton Scattering of Hot Cocoon Radiation by relativistic jets in Gamma-Ray Bursts
- A numerical jet model for the prompt emission of gamma-ray bursts
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- GAME: Grb and All-sky Monitor Experiment