Photospheric emission from GRB 211211A altered by a strong radiation-mediated shock

Fuente: arXiv
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Main Authors: Wistemar, Oscar, Alamaa, Filip, Ryde, Felix
Format: Preprint
Published: 2025
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author Wistemar, Oscar
Alamaa, Filip
Ryde, Felix
author_facet Wistemar, Oscar
Alamaa, Filip
Ryde, Felix
contents Gamma-ray burst (GRB) spectra are typically non-thermal, with many including two spectral breaks suggestive of optically-thin emission. However, the emitted spectrum from a GRB photosphere, which includes prior dissipation of energy by radiation-mediated shocks (RMSs), can also produce such spectral features. Here, we analyze the bright GRB 211211A using the Kompaneets RMS Approximation (KRA). We find that the KRA can fit the time-resolved spectra well, significantly better than the traditionally used Band function in all studied time bins. The analysis of GRB 211211A reveals a jet with a typical Lorentz factor ($Γ\sim 300$), and a strong RMS (upstream dimensionless specific momentum, $γ_u β_u \sim 3$) occurring at a moderate optical depth ($τ\sim 35$) in a relatively cold upstream ($θ_u = k_{\rm B} T_u / m_e c^2 \sim 10^{-4}$). We conclude that broad GRB spectra that exhibit two breaks can also be well explained by photospheric emission. This implies that, {in such cases}, the spectral shape in the MeV-band alone is not enough to determine the emission mechanism during the prompt phase in GRBs.
format Preprint
id arxiv_https___arxiv_org_abs_2506_08122
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Photospheric emission from GRB 211211A altered by a strong radiation-mediated shock
Wistemar, Oscar
Alamaa, Filip
Ryde, Felix
High Energy Astrophysical Phenomena
Gamma-ray burst (GRB) spectra are typically non-thermal, with many including two spectral breaks suggestive of optically-thin emission. However, the emitted spectrum from a GRB photosphere, which includes prior dissipation of energy by radiation-mediated shocks (RMSs), can also produce such spectral features. Here, we analyze the bright GRB 211211A using the Kompaneets RMS Approximation (KRA). We find that the KRA can fit the time-resolved spectra well, significantly better than the traditionally used Band function in all studied time bins. The analysis of GRB 211211A reveals a jet with a typical Lorentz factor ($Γ\sim 300$), and a strong RMS (upstream dimensionless specific momentum, $γ_u β_u \sim 3$) occurring at a moderate optical depth ($τ\sim 35$) in a relatively cold upstream ($θ_u = k_{\rm B} T_u / m_e c^2 \sim 10^{-4}$). We conclude that broad GRB spectra that exhibit two breaks can also be well explained by photospheric emission. This implies that, {in such cases}, the spectral shape in the MeV-band alone is not enough to determine the emission mechanism during the prompt phase in GRBs.
title Photospheric emission from GRB 211211A altered by a strong radiation-mediated shock
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2506.08122