Evidence for mild deviation from power-law distribution of electrons in relativistic shocks: GRB 090902B
arXiv:1107.1236 · doi:10.1111/j.1365-2966.2011.19369.x
Abstract
Many previous studies have determined that the long lasting emission at X-ray, optical and radio wavelengths from gamma-ray bursts (GRBs), called the afterglow, is likely produced by the external forward shock model. In this model, the GRB jet interacts with the circum-stellar medium and drives a shock that heats the medium, which radiates via synchrotron emission. In this work, we carried out a detailed analysis of the late time afterglow data of GRB 090902B using a very careful accounting of the Inverse Compton losses. We find that in the context of the external forward shock model, the only viable option to explain the X-ray and optical data of GRB 090920B is to have the electron energy distribution deviate from a power-law shape and exhibit some slight curvature immediately downstream of the shock front (we explored other models that rely on a single power-law assumption, but they all fail to explain the observations). We find the fraction of the energy of shocked plasma in magnetic field to be ~10^{-6} using late time afterglow data, which is consistent with the value obtained using early gamma-ray data. Studies like the present one might be able to provide a link between GRB afterglow modeling and numerical simulations of particle acceleration in collisionless shocks. We also provide detailed calculations for the early (< 10^3 s) high energy (> 100 MeV) emission and confirm that it is consistent with origin in the external forward shock. We investigated the possibility that the ~10 keV excess observed in the spectrum during the prompt phase also has its origin in the external shock and found the answer to be negative.
17 pages, 6 figures, accepted for publication in MNRAS
References in corpus (13)
- An online repository of Swift/XRT light curves of GRBs
- Gamma-Ray Bursts: Progress, Problems & Prospects
- Particle Acceleration in Relativistic Magnetized Collisionless Electron-Ion Shocks
- A Comprehensive Analysis of Fermi Gamma-Ray Burst Data. I. Spectral Components and Their Possible Physical Origins of LAT/GBM GRBs
- Klein-Nishina Effects on Optically Thin Synchrotron and Synchrotron Self-Compton Spectrum
- Reconciling observed GRB prompt spectra with synchrotron radiation ?
- A Revised Limit of the Lorentz Factors of GRBs with Two Emitting Regions
- Modeling the broadband emission of Fermi/LAT GRB 090902B
- Is GeV Emission from Gamma-Ray Bursts of External Shock Origin?
- Prompt X-ray and Optical Excess Emission due to Hadronic Cascades in Gamma-Ray Bursts
- GRB 090902B: afterglow observations and implications
- Multiband Fitting to Three Long GRBs with Fermi/LAT Data: Structured Ejecta Sweeping up a Density-Jump Medium
- The upstream magnetic field of collisionless GRB shocks: constraint by Fermi-LAT observations
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- The photospheric radiation model for the prompt emission of Gamma-ray Bursts: Interpreting four observed correlations
- Gamma-ray bursts afterglow physics and the VHE domain
- Constraining the magnetic field in GRB relativistic collisionless shocks using radio data
- Inverse Compton cooling in Klein-Nishina regime and GRB prompt spectrum
- The synchrotron-self-Compton spectrum of relativistic blast waves at large Y
- Impact of the ISM magnetic field on GRB afterglow polarization
- On particle acceleration rate in GRB afterglows
- Anomalies in low-energy Gamma-Ray Burst spectra with the Fermi Gamma-Ray Burst Monitor
- The long and the short of the high energy emission in GRB090926A: an external shock
- Time resolved spectral analysis of the prompt emission of long gamma ray bursts with GeV Emission