paper

The Impact of Galaxy Overdensities and Ionized Bubbles on Ly Emission at

arXiv:2505.24080

Abstract

Ly spectroscopy with JWST is opening a new window on the sizes of ionized bubbles through the reionization epoch. Theoretical expectations suggest typical bubble radii should be 0.6-1.5 pMpc at , assuming neutral hydrogen fractions of the intergalactic medium in the range =0.5-0.7. Here we investigate this picture using JWST to characterize the environment and Ly emission of 292 galaxies at across 5 fields spanning a comoving volume of Mpc. If the reionization predictions are correct, we should see overdensities and strong Ly emission clustered in redshift windows of d and angular scales of 5-11 arcmin. We detect Ly emission in 36 out of 292 galaxies, including nine new Ly detections, two of which (in the UDS field) show extremely large equivalent widths (EW = A and A). We identify 13 significant (4-11) galaxy overdensities using redshifts from NIRCam grism and NIRSpec. Strong Ly emitters are almost uniformly found in the overdensities, with nearly all located between the center and back of the structures. The overdensities that host the strong Ly emitters span typical line-of-sight distances (d) and angular scales ( arcmin) that are comparable to the predicted bubble sizes at . We discuss evidence that the EGS is mostly ionized along a 24 pMpc sightline at , based on the presence of 3 overdense structures and 10 Ly emitters in this volume, and find such a large ionized region would pose tension with standard reionization models.

main text 23 pages, 12 figures, submitted to ApJ

The Impact of Galaxy Overdensities and Ionized Bubbles on Ly$α$ Emission at $z\sim7.0-8.5$ · wovepaper