Probing Evolution of Long Gamma-Ray Burst Properties through Their Cosmic Formation History

Fuente: arXiv
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Main Authors: Khatiya, Nikita S., Dainotti, Maria Giovanna, Narendra, Aditya, Bal, Dhruv S., Lenart, Aleksander Ł., Hartmann, Dieter H.
Format: Preprint
Published: 2025
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author Khatiya, Nikita S.
Dainotti, Maria Giovanna
Narendra, Aditya
Bal, Dhruv S.
Lenart, Aleksander Ł.
Hartmann, Dieter H.
author_facet Khatiya, Nikita S.
Dainotti, Maria Giovanna
Narendra, Aditya
Bal, Dhruv S.
Lenart, Aleksander Ł.
Hartmann, Dieter H.
contents The astrophysics of Long GRB (LGRB) progenitors as well as possible cosmological evolution in their properties still poses many open questions. Previous studies suggest that the LGRB rate density (LGRB-RD) follows the cosmic star formation rate density (SFRD) only at high-z and attribute this to the metallicity evolution of progenitor stars. For low z, opinions differ on whether the uptick in the LGRB RD is due to a distinct class of low-luminosity GRBs or perhaps even a different progenitor subclass. To investigate these questions, we utilize data from the Neil Gehrels Swift Observatory and ground-based observatories (redshift). To test the hypothesis that the observations can be mapped (with/without evolution) to the well-established cosmic SFRD, we consider three cases: no evolution, beaming angle evolution, and a simple power-law evolution. The comparison shows that the 'no evolution' case can be ruled out. Our study highlights that the beaming angle evolution or the simple power law evolution are also not sufficient to obtain a good match between the LGRB-RD and SFRD. Rather, the inclusion of multiple evolving properties of LGRBs in combination appears to be required to match the two rate densities in their entirety.
format Preprint
id arxiv_https___arxiv_org_abs_2508_20093
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing Evolution of Long Gamma-Ray Burst Properties through Their Cosmic Formation History
Khatiya, Nikita S.
Dainotti, Maria Giovanna
Narendra, Aditya
Bal, Dhruv S.
Lenart, Aleksander Ł.
Hartmann, Dieter H.
High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
The astrophysics of Long GRB (LGRB) progenitors as well as possible cosmological evolution in their properties still poses many open questions. Previous studies suggest that the LGRB rate density (LGRB-RD) follows the cosmic star formation rate density (SFRD) only at high-z and attribute this to the metallicity evolution of progenitor stars. For low z, opinions differ on whether the uptick in the LGRB RD is due to a distinct class of low-luminosity GRBs or perhaps even a different progenitor subclass. To investigate these questions, we utilize data from the Neil Gehrels Swift Observatory and ground-based observatories (redshift). To test the hypothesis that the observations can be mapped (with/without evolution) to the well-established cosmic SFRD, we consider three cases: no evolution, beaming angle evolution, and a simple power-law evolution. The comparison shows that the 'no evolution' case can be ruled out. Our study highlights that the beaming angle evolution or the simple power law evolution are also not sufficient to obtain a good match between the LGRB-RD and SFRD. Rather, the inclusion of multiple evolving properties of LGRBs in combination appears to be required to match the two rate densities in their entirety.
title Probing Evolution of Long Gamma-Ray Burst Properties through Their Cosmic Formation History
topic High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2508.20093