A Comprehensive Consistency Check between Synchrotron radiation and the Observed Gamma-ray Burst Spectra
arXiv:2107.09859 · doi:10.3847/1538-4357/ac4782
Abstract
We performed a time-resolved spectral analysis of 53 bright gamma-ray bursts (GRBs) observed by \textit{Fermi}/GBM. Our sample consists of 908 individual spectra extracted from the finest time slices in each GRB. We fitted them with the synchrotron radiation model by considering the electron distributions in five different cases: mono-energetic, single power-law, Maxwellian, traditional fast cooling, and broken power-law. Our results were further qualified through Bayesian Information Criterion (BIC) by comparing with the fit by empirical models, namely the so-called Band function and cut-off power-law models. Our study showed that the synchrotron models, except for the fast-cooling case, can successfully fit most observed spectra, with the single power-law case being the most preferred. We also found that the electron distribution indices for the single power-law synchrotron fit in more than half of our spectra exhibits flux-tracking behavior, i.e., the index increases/decreases with the flux increasing/decreasing, implying that the distribution of the radiating electrons is increasingly narrower with time before the flux peaks and becomes more spreading afterward. Our results indicate that the synchrotron radiation is still feasible as a radiation mechanism of the GRB prompt emission phase.
14 pages, 7 figures. Updated version accepted for publication in ApJ
References in corpus (9)
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Klein-Nishina Effects on Optically Thin Synchrotron and Synchrotron Self-Compton Spectrum
- The Fermi GBM Gamma-Ray Burst Spectral Catalog: 10 Years of Data
- Ground-based calibration and characterization of the Fermi Gamma-Ray Burst Monitor Detectors
- Synchrotron emission in small scale magnetic field as possible explanation for prompt emission spectra of gamma-ray bursts
- Detection of Low-energy Breaks in Gamma-Ray Burst Prompt Emission Spectra
- Evidence of two spectral breaks in the prompt emission of gamma ray bursts
- Electron Spectrum for the Prompt Emission of Gamma-ray Bursts in the Synchrotron Radiation Scenario