Evolution Patterns of the Peak Energy in the GRB Prompt Emission
arXiv:2109.11212 · doi:10.1051/0004-6361/202141647
Abstract
There are two different evolution patterns of the peak energy () exhibited during the prompt emission phase of gamma-ray bursts (GRBs), i.e., hard-to-soft and intensity-tracking, of which the physical origin remains unknown. Except for low-energy indices of GRB prompt spectra, the evolution patterns of may be another crucial indicator to discriminate radiation mechanisms (e.g., synchrotron or photosphere) for GRBs. We explore the parameter space to find conditions that could generate different evolution patterns of the peak energy in the framework of synchrotron radiation. We have developed a code to calculate the synchrotron emission from a simplified shell numerically, considering three cooling processes (synchrotron, synchrotron self-Compton (SSC), and adiabatic) of electrons, the effect of decaying magnetic field, the effect of the bulk acceleration of the emitting shell, and the effect of a variable source function that describes electrons accelerated in the emitting region. After exploring the parameter space of the GRB synchrotron scenario, we find that the intensity-tracking pattern of could be achieved in two situations. One is that the cooling process of electrons is dominated by adiabatic cooling or SSC+adiabatic cooling at the same time. The other is that the emitting region is under acceleration in addition to the cooling process being dominated by SSC cooling. Otherwise, hard-to-soft patterns of are normally expected. Moreover, a chromatic intensity-tracking pattern of could be induced by the effect of a variable source function.
15 pages, 23 figures, 3 tables, accepted by Astronomy & Astrophysics
References in corpus (16)
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Formation of Hard Power-laws in the Energetic Particle Spectra Resulting from Relativistic Magnetic Reconnection
- Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
- Detection of a Thermal Spectral Component in the Prompt Emission of GRB 100724B
- Quasi-blackbody component and radiative efficiency of the prompt emission of gamma-ray bursts
- A Comprehensive Analysis of Fermi Gamma-ray Burst Data: II. -Evolution Patterns and Implications for the Observed Spectrum-Luminosity Relations
- A general scheme for modeling gamma-ray burst prompt emission
- 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
- Repeating Fast Radio Bursts from Collapses of the Crust of a Strange Star
- Low-energy Spectra of Gamma-ray Bursts from Cooling Electrons
- Propagation of a Short GRB Jet in the Ejecta: Jet Launching Delay Time, Jet Structure, and GW170817/GRB 170817A
- A Detailed Study on the Equal Arrival Time Surface Effect in Gamma-Ray Burst Afterglows
- The slope of the low energy spectrum of Gamma-Ray Burst prompt emission
- Inverse Compton Scattering Spectra of Gamma-Ray Burst Prompt Emission