Emission from accelerating jets in gamma-ray bursts: Radiation dominated flows with increasing mass outflow rates
arXiv:1708.01134 · doi:10.1093/mnras/stx2019
Abstract
We study the narrowest spectra expected from gamma-ray bursts. We present an analytical function for the spectrum that is emitted from the photosphere of a radiation-dominated flow that is under acceleration. This is the narrowest possible spectrum and it differs from a Planck function. We also present numerical spectra from photospheres occurring during the transition into the coasting phase of the flow. Using these spectral models, we reanalyse Fermi observations of GRB100507 and GRB101219, which both have been reported to have very narrow spectra. The bursts can be fitted by the spectral models: For GRB101219 the spectrum is consistent with the photosphere occurring below or close to the saturation radius, while for GRB100507 the photosphere position relative to the saturation radius can be determined as a function of time. In the latter case, we find that the photosphere initially occurs in the acceleration phase and thereafter transitions into the coasting phase. We also find that this transition occurs at the same time as the change in observed cooling behaviour: the temperature is close to constant before the break and decays after. We argue that such a transition can be explained by an increasing mass outflow rate. Both analysed bursts thus give strong evidence that the jets are (initially) radiation dominated.
Accepted by MNRAS
References in corpus (18)
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Detection of a Thermal Spectral Component in the Prompt Emission of GRB 100724B
- Prompt GRB emission from gradual energy dissipation
- The Observable Signatures of GRB Cocoons
- GRB110721A: An extreme peak energy and signatures of the photosphere
- Temporal Evolution Of Thermal Emission From Relativistically Expanding Plasma
- Quasi-blackbody component and radiative efficiency of the prompt emission of gamma-ray bursts
- A new method of determining the initial size and Lorentz factor of gamma-ray burst fireballs using a thermal emission component
- Prompt emission spectra from the photosphere of a GRB
- Deceleration of arbitrarily magnetized GRB ejecta: the complete evolution
- Time-Resolved Spectroscopy of the 3 Brightest and Hardest Short Gamma-Ray Bursts Observed with the FGST Gamma-Ray Burst Monitor
- The width of gamma-ray burst spectra
- Poynting flux dominated jets challenged by their photospheric emission
- Evidence for jet launching close to the black hole in GRB 101219B - a Fermi GRB dominated by thermal emission
- On Spectral Evolution and Temporal Binning in Gamma-Ray Bursts
- Monte Carlo simulations of the photospheric emission in GRBs
- Radiative striped wind model for gamma-ray bursts
- High-Energy Non-Thermal and Thermal Emission from GRB141207A detected by Fermi
Cited by in corpus (5)
- Non-dissipative photospheres in GRBs: Spectral appearance in the Fermi/GBM catalogue
- On the -Intensity Correlation in Gamma-Ray Bursts: Subphotospheric Heating with Varying Entropy
- Is magnetically dominated outflow required to explain GRBs?
- Detection of Prompt Fast-Variable Thermal Component in Multi-Pulse Short Gamma-Ray Burst 170206A
- Effect of Fluid Composition on a Jet Breaking Out of a Cocoon in Gamma-ray Bursts: A Relativistic de Laval Nozzle Treatment