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Neutral fraction of hydrogen in the intergalactic medium surrounding high-redshift gamma-ray burst 210905A

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posted on 2025-02-06, 12:56 authored by HM Fausey, S Vejlgaard, AJ van der Horst, KE Heintz, L Izzo, DB Malesani, K Wiersema, JPU Fynbo, Nial TanvirNial Tanvir, SD Vergani, A Saccardi, A Rossi, S Campana, S Covino, V D’Elia, M De Pasquale, D Hartmann, P Jakobsson, C Kouveliotou, A Levan, A Martin-Carrillo, A Melandri, J Palmerio, G Pugliese, R Salvaterra

The Epoch of Reionization (EoR) is a key period of cosmological history in which the intergalactic medium (IGM) underwent a major phase change from being neutral to almost completely ionized. Gamma-ray bursts (GRBs) are luminous and unique probes of their environments that can be used to study the timeline for the progression of the EoR. Here, we present a detailed analysis of the European Southern Observatory Very Large Telescope X-shooter spectrum of GRB 210905A, which resides at a redshift of $z\sim 6.3$. We focus on estimating the fraction of neutral hydrogen, $x_{\rm H \, {\small I}}$, on the line of sight to the host galaxy of GRB 210905A by fitting the shape of the Lyman-$\alpha$ damping wing of the afterglow spectrum. The X-shooter spectrum has a high signal-to-noise ratio, but the complex velocity structure of the host galaxy limits the precision of our conclusions. The statistically preferred model suggests a low neutral fraction with a 3$\sigma$ upper limit of $x_{\rm H \, {\small I}} \lesssim 0.15$ or $x_{\rm H \, {\small I}} \lesssim 0.23$, depending on the absence or presence of an ionized bubble around the GRB host galaxy, indicating that the IGM around the GRB host galaxy is mostly ionized. We discuss complications in current analyses and potential avenues for future studies of the progression of the EoR and its evolution with redshift.

History

Author affiliation

College of Science & Engineering Physics & Astronomy

Version

  • VoR (Version of Record)

Published in

Monthly Notices of the Royal Astronomical Society

Volume

536

Issue

3

Pagination

2839 - 2856

Publisher

Oxford University Press (OUP)

issn

0035-8711

eissn

1365-2966

Copyright date

2024

Available date

2025-02-06

Language

en

Deposited by

Professor Nial Tanvir

Deposit date

2025-01-16

Data Access Statement

The data presented in this paper are available upon request to the first author.

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