Towards the Properties of Long Gamma-Ray Burst Progenitors with Swift Data
arXiv:0909.5247 · doi:10.1111/j.1365-2966.2009.15760.x
Abstract
We investigate the properties of both the prompt and X-ray afterglows of gamma-ray bursts (GRBs) in the burst frame with a sample of 33 Swift GRBs. Assuming that the steep decay segment in the canonical X-ray afterglow lightcurves is due to the curvature effect, we fit the lightcurves with a broken power-law to derive the zero time of the last emission epoch of the prompt emission (t1) and the beginning as well as the end time of the shallow decay segment (t2 and t3).We show that both the isotropic peak gamma-ray luminosity and gamma-ray energy are correlated with the isotropic X-ray energy of the shallow decay phase and the isotropic X-ray luminosity at t2. We infer the properties of the progenitor stars based on a model proposed by Kumar et al. who suggested that both the prompt gamma-rays and the X-ray afterglows are due to the accretions of different layers of materials of the GRB progenitor star by a central black hole (BH). We find that most of the derived masses of the core layers are 0.1-5 solar mass with a radius of 10^8-10^10 cm. The rotation parameter is correlated with the burst duration, being consistent with the expectation of collapsar models. The estimated radii and the masses of the fall-back materials for the envelope layers are 10^10-10^12 cm and 10^-3~1 solar mass, respectively. The average accretion rates in the shallow decay phase are correlated with those in the prompt gamma-ray phase, but they are much lower. The derived radii of the envelope are smaller than the photospheric radii of Wolf-Rayet (WR) stars. It is interesting that the assembled mass density profile for the bursts in our sample is also well consistent with the simulation for a pre-supernova star with 25 solar mass.
12 pages in MNRAS two-column style, 8 figures, 3 tables, accepted for publication in MNRAS
References in corpus (21)
- The Supernova -- Gamma-Ray Burst Connection
- Gamma-Ray Bursts: Progress, Problems & Prospects
- Neutrino-Cooled Accretion Disks around Spinning Black Hole
- GRB Radiative Efficiencies Derived from the Swift Data: GRBs vs. XRFs, Long vs. Short
- A Comprehensive Analysis of the Swift/XRT Data: II. Diverse Physical Origins of the Shallow Decay Segment
- Mass Fall-back and Accretion in the Central Engine of Gamma-Ray Bursts
- A Comprehensive Analysis of Swift/XRT Data: III. Jet Break Candidates in X-ray and Optical Afterglow Lightcurves
- A comprehensive analysis of Swift/XRT data: I. Apparent spectral evolution of GRB X-ray tails
- On the Mechanism of Gamma-Ray Burst Afterglows
- Can the early X-ray afterglow of GRBs be explained by a contribution from the reverse shock?
- "Late prompt" emission in Gamma Ray Bursts?
- Neutrino-Dominated Accretion Models for Gamma-Ray Bursts: Effects of General Relativity and Neutrino Opacity
- Properties of Gamma-Ray Burst Progenitor Stars
- Instabilities in the time-dependent neutrino disc in Gamma-Ray Bursts
- Prior Emission Model for X-ray Plateau Phase of Gamma-Ray Burst Afterglows
- Shock Breakout in Type Ibc Supernovae and Application to GRB 060218/SN 2006aj
- Curvature Effect of a Non-Power-Law Spectrum and Spectral Evolution of GRB X-Ray Tails
- Low angular momentum accretion in the collapsar: how long can a long GRB be?
- The role of afterglow break-times as GRB jet angle indicators
- The full curvature effect expected in early X-ray afterglow emission of gamma-ray bursts
- Long lived central engines in Gamma Ray Bursts
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- Constraining GRB Initial Lorentz Factor with the Afterglow Onset Feature and Discovery of a Tight Gamma_0-E_iso Correlation
- Stellar envelope inflation near the Eddington limit. Implications for the radii of Wolf-Rayet stars and luminous blue variables
- The X-ray light curve of Gamma-ray bursts: clues to the central engine