Relativistic shock breakout from a stellar wind
arXiv:1708.05018 · doi:10.1093/mnras/sty637
Abstract
We construct an analytic model for the breakout of a relativistic radiation mediated shock from a stellar wind, and exploit it to calculate the observational diagnostics of the breakout signal. The model accounts for photon escape through the finite optical depth wind, and treats the fraction of downstream photons escaping to infinity as an adiabatic parameter that evolves in a quasi-steady manner. It is shown that the shock is mediated by radiation even when a large fraction of the downstream photons escape, owing to self-generation and adjustment of opacity through accelerated pair creation. Relativistic breakout occurs at radii at which the total optical depth of the wind ahead of the shock is , provided that the local shock Lorentz factor exceeds unity at this location. Otherwise the breakout occurs in the Newtonian regime. A relativistic breakout is expected in a highly energetic spherical explosion ( erg) of a Wolf-Rayet star, or in cases where a smaller amount of energy ( erg) is deposited by a jet in the outer layers of the star. The properties of the emission observed in such explosions during the relativistic breakout are derived. We find that for typical parameters about ergs are radiated in the form of MeV gamma-rays over a duration that can range from a fraction of a second to an hour. Such a signal may be detectable out to 10-100 Mpc by current gamma-ray satellites.
References in corpus (9)
- The Observable Signatures of GRB Cocoons
- The cocoon emission - an electromagnetic counterpart to gravitational waves from neutron star mergers
- A unified picture for low-luminosity and long gamma-ray bursts based on the extended progenitor of llgrb 060218/SN 2006aj
- Relativistic Radiation Mediated Shocks
- The afterglow of a relativistic shock breakout and low-luminosity GRBs
- SN 2008D: A Wolf-Rayet explosion through a thick wind
- 12C/13C isotopic ratios in red-giant stars of the open cluster NGC 6791
- Oblique Shock Breakout in Supernovae and Gamma-Ray Bursts: II. Numerical Solutions For Non-Relativistic Pattern Speeds
- Relativistic Jets in Core Collapse Supernovae
Cited by in corpus (14)
- A cocoon shock breakout as the origin of the -ray emission in GW170817
- The electromagnetic counterparts of compact binary mergers
- Physics of radiation mediated shocks and its applications to GRBs, supernovae, and neutron star mergers
- Monte-Carlo simulations of fast Newtonian and mildly relativistic shock breakout from a stellar wind
- The Spectrum of a Fast Shock Breakout from a Stellar Wind
- Monte-Carlo simulations of relativistic radiation mediated shocks: II. photon starved regime
- Particle Acceleration in Mildly Relativistic Outflows of Fast Energetic Transient Sources
- Plasma kinetic effects in relativistic radiation mediated shocks
- The role of plasma instabilities in relativistic radiation mediated shocks: stability analysis and particle-in-cell simulations
- Cocoon shock breakout emission from binary neutron star mergers
- Shock Breakout from Stellar Envelopes: The relativistic limit
- Magnetically driven coupling in relativistic radiation-mediated shocks
- An unexplored regime of shock breakout with a distinct spectral signature
- Anomalous coupling in radiation mediated shocks}