Dissecting the interstellar medium of a z=6.3 galaxy: X-shooter spectroscopy and HST imaging of the afterglow and environment of the Swift GRB 210905A
A. Saccardi, S. D. Vergani, A. De Cia, V. D'Elia, K. E. Heintz, L., Izzo, J. T. Palmerio, P. Petitjean, A. Rossi, A. de Ugarte Postigo, L., Christensen, C. Konstantopoulou, A. J. Levan, D. B. Malesani, P. M{\o}ller,, T. Ramburuth-Hurt, R. Salvaterra, N. R. Tanvir, C. C. Th\"one

TL;DR
This paper uses spectroscopy and imaging to analyze a galaxy at redshift 6.3, revealing its interstellar medium properties, chemical composition, and galaxy environment, providing insights into early galaxy formation.
Contribution
It presents detailed ISM properties of a z=6.3 galaxy using GRB afterglow spectroscopy and HST imaging, offering new data on early galaxy characteristics.
Findings
Metallicity of [M/H]=-1.72+/-0.13 at z=6.3
Detection of complex absorption lines indicating ISM conditions
Identification of galaxy structure and potential Lyman-alpha emission
Abstract
The study of the properties of galaxies in the first billion years after the Big Bang is one of the major topic of current astrophysics. Optical/near-infrared spectroscopy of the afterglows of long Gamma-ray bursts (GRBs) provide a powerful diagnostic tool to probe the interstellar medium (ISM) of their host galaxies and foreground absorbers, even up to the highest redshifts. We analyze the VLT/X-shooter afterglow spectrum of GRB 210905A, triggered by the Swift Neil Gehrels Observatory, and detect neutral-hydrogen, low-ionization, high-ionization, and fine-structure absorption lines from a complex system at z=6.3118, that we associate with the GRB host galaxy. We study the ISM properties of the host system, revealing the metallicity, kinematics and chemical abundance pattern. The total metallicity of the z~6.3 system is [M/H]=-1.72+/-0.13, after correcting for dust-depletion and taking…
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