Nonthermal gamma-ray and X-ray flashes from shock breakout in gamma-ray bursts/supernovae
arXiv:astro-ph/0608033 · doi:10.1086/519228
Abstract
Thermal X-ray emission which is simultaneous with the prompt gamma-rays has been detected for the first time from a supernova connected with a gamma-ray burst (GRB), namely GRB060218/SN2006aj. It has been interpreted as arising from the breakout of a mildly relativistic, radiation-dominated shock from a dense stellar wind surrounding the progenitor star. There is also evidence for the presence of a mildly relativistic ejecta in GRB980425/SN1998bw, based on its X-ray and radio afterglow. Here we study the process of repeated bulk Compton scatterings of shock breakout thermal photons by the mildly relativistic ejecta. During the shock breakout process, a fraction of the thermal photons would be repeatedly scattered between the pre-shock material and the shocked material as well as the mildly relativistic ejecta and, as a result, the thermal photons get boosted to increasingly higher energies. This bulk motion Comptonization mechanism will produce nonthermal gamma-ray and X-ray flashes, which could account for the prompt gamma-ray burst emission in low-luminosity supernova-connected GRBs, such as GRB060218. A Monte Carlo code has been developed to simulate this repeated scattering process, which confirms that a significant fraction of the thermal photons get "accelerated" to form a nonthermal component, with a dominant luminosity. This interpretation for the prompt nonthermal emission of GRB060218 may imply that either the usual internal shock emission from highly relativistic jets in these low-luminosity GRBs is weak, or alternatively, that there are no highly relativistic jets in this peculiar class of bursts.
Accepted for publication in ApJ; Introduction expanded, references added, conclusions unchanged; total 7 pages including 2 color figures and 1 table
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- The Observable Signatures of GRB Cocoons
- High-energy Cosmic Rays and Neutrinos from Semi-relativistic Hypernovae
- GRB Precursors in the Fallback Collapsar Scenario
- The afterglow of a relativistic shock breakout and low-luminosity GRBs
- A fast X-ray transient from a weak relativistic jet associated with a type Ic-BL supernova
- On the Composition of GRBs' Collapsar Jets
- Collisionless Shocks and TeV Neutrinos before Supernova Shock Breakout from an Optically Thick Wind
- The Role of Inhomogeneities in Supernova Shock Breakout Emission
- Statistical studies of optically dark gamma-ray bursts in the Swift era
- Monte-Carlo simulations of fast Newtonian and mildly relativistic shock breakout from a stellar wind
- Broadband lightcurve characteristics of GRBs 980425 and 060218 and comparison with long-lag, wide-pulse GRBs
- Paving the way to simultaneous multi-wavelength astronomy
- The velocity distribution of outflows driven by choked jets in stellar envelopes
- New JWST redshifts for the host galaxies of CDF-S XT1 and XT2: understanding their nature
- Hydrodynamical interaction of mildly relativistic ejecta with an ambient medium
- Luminosity function and event rate density of XMM-Newton-selected supernova shock-breakout candidates
- Revisiting GRB 060218: new insights into low-luminosity gamma-ray bursts from a revised shock breakout model
- A new long gamma-ray burst formation pathway at solar metallicity
- An unexplored regime of shock breakout with a distinct spectral signature
- Einstein Probe Fast X-ray Transients Extend the Physical Parameter Space of Relativistic Jets
- Photon Acceleration at Shock Breakout of Trans-Relativistic Supernova