Synchrotron signature of a relativistic blast wave with decaying microturbulence
arXiv:1206.4187 · doi:10.1093/mnras/sts081
Abstract
Microphysics of weakly magnetized relativistic collisionless shock waves, corroborated by recent high performance numerical simulations, indicate the presence of a microturbulent layer of large magnetic field strength behind the shock front, which must decay beyond some hundreds of skin depths. The present paper discusses the dynamics of such microturbulence, borrowing from these same numerical simulations, and calculates the synchrotron signature of a powerlaw of shock accelerated particles. The decaying microturbulent layer is found to leave distinct signatures in the spectro-temporal evolution of the spectrum of a decelerating blast wave, which are potentially visible in early multi-wavelength follow-up observations of gamma-ray bursts. This paper also discusses the influence of the evolving microturbulence on the acceleration process, with particular emphasis on the maximal energy of synchrotron afterglow photons, which falls in the GeV range for standard gamma-ray burst parameters. Finally, this paper argues that the evolving microturbulence plays a key role in shaping the spectra of recently observed gamma-ray bursts with extended GeV emission, such as GRB090510.
version to appear in MNRAS -- minor modifications + added discussion of synchrotron self-absorption; 23 pages, 8 figures
References in corpus (14)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Long Term Evolution of Magnetic Turbulence in Relativistic Collisionless Shocks: Electron-Positron Plasmas
- Magnetic field evolution in relativistic unmagnetized collisionless shocks
- LevelScheme: A level scheme drawing and scientific figure preparation system for Mathematica
- On the efficiency of Fermi acceleration at relativistic shocks
- On Fermi acceleration and MHD-instabilities at ultra-relativistic magnetized shock waves
- Cosmic-Ray Acceleration at Ultrarelativistic Shock Waves: Effects of Downstream Short-Wave Turbulence
- Particle transport and heating in the microturbulent precursor of relativistic shocks
- A leptonic-hadronic model for the afterglow of gamma-ray burst 090510
- Synchrotron emission in the fast cooling regime: which spectra can be explained?
- The late-time afterglow of the extremely energetic short burst GRB 090510 revisited
- Gamma-ray Burst Prompt Emission: Jitter Radiation in Stochastic Magnetic Field Revisited
- On particle acceleration rate in GRB afterglows
- The upstream magnetic field of collisionless GRB shocks: constraint by Fermi-LAT observations
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- Spectral Diversities of Gamma-ray Bursts in High Energy Bands: Hints from Turbulent Cascade
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