Testing the blast wave model with Swift GRBs
arXiv:0812.2813 · doi:10.1016/j.asr.2010.08.005
Abstract
The complex structure of the light curves of Swift GRBs has made the identification of breaks, and the interpretation of the blast wave caused by the burst, more difficult than in the pre-Swift era. We aim to identify breaks, which are possibly hidden, and to constrain the blast wave parameters; electron energy distribution, p, density profile of the circumburst medium, k, and the continued energy injection index, q. We do so by comparing the observed multi-wavelength light curves and X-ray spectra of our sample to the predictions of the blast wave model. We can successfully interpret all of the bursts in our sample of 10, except two, within this framework and we can estimate, with confidence, the electron energy distribution index for 6 of the sample. Furthermore we identify jet breaks in a number of the bursts. A statistical analysis of the distribution of p reveals that, even in the most conservative case of least scatter, the values are not consistent with a single, universal value. The values of k suggest that the circumburst density profiles are not drawn from only one of the constant density or wind-like media populations.
14 pages, accepted by MNRAS after minor changes, including extension of discussion (section 4.3)
References in corpus (10)
- Methods and results of an automatic analysis of a complete sample of Swift-XRT observations of GRBs
- An online repository of Swift/XRT light curves of GRBs
- The early X-ray emission from GRBs
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Temporal Properties and Morphology
- Gamma-Ray Burst Afterglows as Probes of Environment and Blastwave Physics II: the Distribution of p and Structure of the Circumburst Medium
- On the electron energy distribution index of Swift Gamma-Ray Burst Afterglows
- No Universality for Electron's Power-Law Index (p) in Gamma-Ray Bursts and Other Relativistic Sources
- X-ray Flares in Early GRB Afterglows
- Afterglow Light Curves and Broken Power Laws: A Statistical Study
- Are the missing X-ray breaks in Gamma-ray Burst afterglow light curves merely hidden?