The reionising bubble size distribution around galaxies
Ting-Yi Lu, Charlotte Mason, Anne Hutter, Andrei Mesinger, Yuxiang, Qin, Daniel P. Stark, Ryan Endsley

TL;DR
This paper uses large-scale simulations to analyze the distribution and likelihood of ionised bubbles around high-redshift galaxies, providing insights into the reionisation process and the interpretation of Lyα observations.
Contribution
It introduces extensive (1.6 Gpc)^3 simulations to quantify bubble sizes around early galaxies and compares different reionisation models, enhancing understanding of reionisation signatures.
Findings
Galaxies and overdensities are significantly more likely to be in large ionised bubbles.
Bright galaxies and overdensities have larger characteristic bubble sizes with less scatter.
Observed high-redshift overdensities are likely tracing large ionised regions, supporting their use as reionisation probes.
Abstract
Constraining when and how reionisation began is pivotal for understanding when the first galaxies formed. Lyman-alpha (Ly) emission from galaxies is currently our most promising probe of these early stages. At z>7 the majority of galaxies detected with Ly are in candidate overdensities. Here we quantify the probability of these galaxies residing in large ionised bubbles. We create (1.6 Gpc) reionising intergalactic medium (IGM) simulations, providing sufficient volume to robustly measure bubble size distributions around UV-bright galaxies and rare overdensities. We find galaxies and overdensities are 10-1000x 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…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Immunotherapy and Immune Responses
