English

The reionising bubble size distribution around galaxies

Astrophysics of Galaxies 2023-04-25 v1 Cosmology and Nongalactic Astrophysics

Abstract

Constraining when and how reionisation began is pivotal for understanding when the first galaxies formed. Lyman-alpha (Lyα\alpha) emission from galaxies is currently our most promising probe of these early stages. At z>7 the majority of galaxies detected with Lyα\alpha are in candidate overdensities. Here we quantify the probability of these galaxies residing in large ionised bubbles. We create (1.6 Gpc)3^3 reionising intergalactic medium (IGM) simulations, providing sufficient volume to robustly measure bubble size distributions around UV-bright galaxies and rare overdensities. We find MUV16M_{\rm UV} \lesssim -16 galaxies and overdensities are \gtrsim10-1000x more likely to trace ionised bubbles compared to randomly selected positions. The brightest galaxies and strongest overdensities have bubble size distributions with highest characteristic size and least scatter. We compare two models: gradual reionisation driven by numerous UV-faint galaxies versus more rapid reionisation by rarer brighter galaxies, producing larger bubbles at fixed neutral fraction. We demonstrate that recently observed z~7 overdensities are highly likely to trace large ionised bubbles, corroborated by their high Lyα\alpha detection rates. However, the z~8.7 association of Lyα\alpha emitters in EGS and GN-z11, with Lyα\alpha at z=10.6, are unlikely to trace large bubbles in our fiducial model -- 11% and 7% probability of >1 proper Mpc bubbles, respectively. Lyα\alpha detections at such high redshifts could be explained by: a less neutral IGM than previously expected; larger ionised regions at fixed neutral fraction; or if intrinsic Lyα\alpha flux is unusually strong in these galaxies. We discuss how to test these scenarios with JWST and the prospects for using upcoming wide-area surveys to distinguish between reionisation models.

Keywords

Cite

@article{arxiv.2304.11192,
  title  = {The reionising bubble size distribution around galaxies},
  author = {Ting-Yi Lu and Charlotte Mason and Anne Hutter and Andrei Mesinger and Yuxiang Qin and Daniel P. Stark and Ryan Endsley},
  journal= {arXiv preprint arXiv:2304.11192},
  year   = {2023}
}

Comments

15 pages (+ 3 pages in Appendix), 13 figures, submitted to MNRAS

R2 v1 2026-06-28T10:14:08.548Z