Nonthermal Synchrotron Radiation from Gamma Ray Burst External Shocks and the X-ray Flares Observed with Swift
arXiv:astro-ph/0703223 · doi:10.1086/589730
Abstract
An analysis of the interaction between a spherical relativistic blast-wave shell and a stationary cloud with a spherical cap geometry is performed assuming that the cloud width << x, where x is the distance of the cloud from the GRB explosion center. The interaction is divided into three phases: (1) a collision phase with both forward and reverse shocks; (2) a penetration phase when either the reverse shock has crossed the shell while the forward shock continues to cross the cloud, or vice versa; and (3) an expansion phase when, both shocks having crossed the cloud and shell, the shocked fluid expands. Temporally evolving spectral energy distributions (SEDs) are calculated for the problem of the interaction of a blast-wave shell with clouds that subtend large and small angles compared with the Doppler(-cone) angle 1/Gamma_0, where Gamma_0 is the coasting Lorentz factor. The Lorentz factor evolution of the shell/cloud collision is treated in the adiabatic limit. Behavior of the light curves and SEDs on, e.g., Gamma_0, shell-width parameter eta, and properties and locations of the cloud is examined. Short timescale variability (STV) in GRB light curves, including ~100 keV gamma-ray pulses observed with BATSE and delayed ~1 keV X-ray flares found with Swift, can be explained by emissions from an external shock formed by the GRB blast wave colliding with small density inhomogeneities in the "frozen pulse" approximation (eta -> 0, where Delta_0 + eta x/Gamma_0^2 is the blast-wave shell width), and perhaps in the thin-shell approximation (eta ~ 1/Gamma_0), but not when eta ~ 1. If this approximation is valid, then external shock processes could make the dominant prompt and afterglow emissions in GRB light curves, consistent with short delay two-step collapse models for GRBs.
19 pages, 11 figures, ApJ, in press (Aug. 20, 2008); includes revisions
References in corpus (16)
- Gamma-Ray Bursts: Progress, Problems & Prospects
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Temporal Properties and Morphology
- X-ray flares and the duration of engine activity in gamma-ray bursts
- Smooth Light Curves from a Bumpy Ride: Relativistic Blast Wave Encounters a Density Jump
- Post-Launch Analysis of Swift's Gamma-Ray Burst Detection Sensitivity
- Confirming the gamma-ray burst spectral-energy correlations in the era of multiple time breaks
- X-ray Flares in Early GRB Afterglows
- Internal shocks in relativistic outflows: collisions of magnetized shells
- Pulse Width Evolution of Late Time X-rays Flares in GRBs: Evidence For Internal Shocks
- High energy afterglows and flares from Gamma-Ray Burst by Inverse Compton emission
- Correlation of Photon and Neutrino Fluxes in Blazars and Gamma Ray Bursts
- Time-Dependent Synchrotron and Compton Spectra from Jets of Microquasars
- Early multi-wavelength emission from Gamma-ray Bursts: from Gamma-ray to X-ray
- GRB 050822: Detailed analysis of an XRF observed by Swift
- Inferring the emission regions for different kinds of gamma-ray bursts
- GRBs spectral correlations and their cosmological use
Cited by in corpus (5)
- A Comparison of the Afterglows of Short- and Long-Duration Gamma-Ray Bursts
- Ultra High Energy Cosmic Rays from Black Hole Jets of Radio Galaxies
- Acceleration of Ultra-High Energy Cosmic Rays in the Colliding Shells of Blazars and GRBs: Constraints from the Fermi Gamma ray Space Telescope
- Analysis of GRB 080319B and GRB 050904 within the fireshell model: evidence for a broader spectral energy distribution
- A set of distinctive properties ruling the prompt emission of GRB 230307A and other long γ-ray bursts from compact object mergers