paper

Neutral hydrogen in and around galaxies during the Epoch of Reionization

arXiv:2510.01315

Abstract

JWST spectra revealing Lyman- (Ly) absorption in galaxies offer a unique probe of reionization's earliest stages. However, disentangling absorption by the increasingly neutral intergalactic medium (IGM) from that in galaxies' interstellar and circumgalactic medium (ISM, CGM) remains challenging due to the poorly constrained nature of neutral hydrogen (HI) in and around galaxies at these redshifts. We use the SERRA high-resolution cosmological zoom-in simulations to characterize the HI distribution and its evolution along sightlines to star-forming regions during reionization, to interpret the contribution of local HI (ISM+CGM) to Ly absorption in spectra. We analyze galaxies, generating mock sightlines from each galaxy's star formation peak. We study the sightline distribution of HI column densities () and its variation with radius, halo mass and redshift. We find broad sightline variation in (0.5-1.5dex) due to complex ISM morphology driven by bursty star formation, with median . Dense ISM gas is the dominant origin of damped Ly absorption (DLA) systems along sightlines towards star-forming regions, outweighing gas in the CGM, filaments and proximate absorbers. Median increases with halo mass, scaling roughly with the virial radius, as expected due to larger potentials and more extended CGM, but shows negligible redshift evolution at fixed halo mass. This suggests post-reionization distributions may provide useful priors to interpret IGM damping wings at higher redshifts. To interpret strong DLA candidates found by JWST, we investigate sightlines. These trace dense, metal-enriched ISM within <1 kpc of massive halos, a scenario testable with higher-resolution spectroscopy.

12 pages, 7 figures. Submitted to A&A