_version_ 1866910020158881792
author Pollock, Clara L.
Heintz, Kasper E.
Witstok, Joris
Gottumukkala, Rashmi
Brammer, Gabriel
Bose, Sownak
Cameron, Alex J.
Dayal, Pratika
van Dokkum, Pieter
Fynbo, Johan
Gelli, Viola
Hayes, Matthew J.
Inoue, Akio K.
Lagos, Claudia del P.
Laursen, Peter
Meyer, Romain A.
Naidu, Rohan
Oesch, Pascal
Rowland, Lucie E.
Tanvir, Nial R.
Tacchella, Sandro
Terp, Chamilla
Valentino, Francesco
Walter, Fabian
Weaver, John
Witten, Callum
author_facet Pollock, Clara L.
Heintz, Kasper E.
Witstok, Joris
Gottumukkala, Rashmi
Brammer, Gabriel
Bose, Sownak
Cameron, Alex J.
Dayal, Pratika
van Dokkum, Pieter
Fynbo, Johan
Gelli, Viola
Hayes, Matthew J.
Inoue, Akio K.
Lagos, Claudia del P.
Laursen, Peter
Meyer, Romain A.
Naidu, Rohan
Oesch, Pascal
Rowland, Lucie E.
Tanvir, Nial R.
Tacchella, Sandro
Terp, Chamilla
Valentino, Francesco
Walter, Fabian
Weaver, John
Witten, Callum
contents One of the major conundrums in contemporary extragalactic astrophysics is the apparent overabundance of a remarkable population of UV-bright galaxies at redshifts $z\gtrsim 9$. We analyse galaxies spectroscopically observed by JWST/NIRSpec Prism and confirmed to lie at $z>9$, with sufficient signal-to-noise to carefully model their rest-frame UV to optical continua and line emission. In particular, we model the damped Lyman-$α$ (Ly$α$) absorption (DLA) features of each galaxy to place observational constraints on the gas assembly of neutral atomic hydrogen (HI) onto the galaxy halos at the onset of cosmic reionisation. Based on the derived HI column densities and star-formation rate (SFR) surface densities, we show that all galaxies are highly efficient at forming stars on rapid $\sim 10-100\,$Myr depletion timescales, greatly in excess compared to the canonical local universe Kennicutt-Schmidt relation and predictions from state-of-the-art galaxy formation simulations. The dense HI gas appears to also drive the offset from the fundamental-metallicity relation of these galaxies though its dust-to-gas ratio is seemingly consistent with values derived for local galaxies except for the lowest metallicity sight-lines. Our results provide the first robust observational constraints on the impact of pristine HI gas on early galaxy assembly, and imply that a combination of highly efficient star formation and low dust obscuration can likely explain the UV-brightness of galaxies at cosmic dawn.
format Preprint
id arxiv_https___arxiv_org_abs_2602_11783
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Characterising Ly$α$ damping wings at the onset of reionisation: Evidence for highly efficient star formation driven by dense, neutral gas in UV-bright galaxies at $z>9$
Pollock, Clara L.
Heintz, Kasper E.
Witstok, Joris
Gottumukkala, Rashmi
Brammer, Gabriel
Bose, Sownak
Cameron, Alex J.
Dayal, Pratika
van Dokkum, Pieter
Fynbo, Johan
Gelli, Viola
Hayes, Matthew J.
Inoue, Akio K.
Lagos, Claudia del P.
Laursen, Peter
Meyer, Romain A.
Naidu, Rohan
Oesch, Pascal
Rowland, Lucie E.
Tanvir, Nial R.
Tacchella, Sandro
Terp, Chamilla
Valentino, Francesco
Walter, Fabian
Weaver, John
Witten, Callum
Astrophysics of Galaxies
One of the major conundrums in contemporary extragalactic astrophysics is the apparent overabundance of a remarkable population of UV-bright galaxies at redshifts $z\gtrsim 9$. We analyse galaxies spectroscopically observed by JWST/NIRSpec Prism and confirmed to lie at $z>9$, with sufficient signal-to-noise to carefully model their rest-frame UV to optical continua and line emission. In particular, we model the damped Lyman-$α$ (Ly$α$) absorption (DLA) features of each galaxy to place observational constraints on the gas assembly of neutral atomic hydrogen (HI) onto the galaxy halos at the onset of cosmic reionisation. Based on the derived HI column densities and star-formation rate (SFR) surface densities, we show that all galaxies are highly efficient at forming stars on rapid $\sim 10-100\,$Myr depletion timescales, greatly in excess compared to the canonical local universe Kennicutt-Schmidt relation and predictions from state-of-the-art galaxy formation simulations. The dense HI gas appears to also drive the offset from the fundamental-metallicity relation of these galaxies though its dust-to-gas ratio is seemingly consistent with values derived for local galaxies except for the lowest metallicity sight-lines. Our results provide the first robust observational constraints on the impact of pristine HI gas on early galaxy assembly, and imply that a combination of highly efficient star formation and low dust obscuration can likely explain the UV-brightness of galaxies at cosmic dawn.
title Characterising Ly$α$ damping wings at the onset of reionisation: Evidence for highly efficient star formation driven by dense, neutral gas in UV-bright galaxies at $z>9$
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2602.11783