paper

On the evolution of the size of Lyman alpha halos across cosmic time: no change in the circumgalactic gas distribution when probed by line emission

arXiv:2304.13057 · doi:10.1093/mnras/stad1264

Abstract

Lyman (Ly) is now routinely used as a tool for studying high-redshift galaxies and its resonant nature means it can trace neutral hydrogen around star-forming galaxies. Integral field spectrograph measurements of high-redshift Ly emitters indicate that significant extended Ly halo emission is ubiquitous around such objects. We present a sample of redshift 0.23 to 0.31 galaxies observed with the Hubble Space Telescope selected to match the star formation properties of high- samples while optimizing the observations for detection of low surface brightness Ly emission. The Ly escape fractions range between 0.7\% and 37\%, and we detect extended Ly emission around six out of seven targets. We find Ly halo to UV scale length ratios around 6:1 which is marginally lower than high-redshift observations, and halo flux fractions between 60\% and 85\% -- consistent with high-redshift observations -- when using comparable methods. However, our targets show additional extended stellar UV emission: we parametrize this with a new double exponential model. We find that this parametrization does not strongly affect the observed Ly halo fractions. We find that deeper H data would be required to firmly determine the origin of Ly halo emission, however, there are indications that H is more extended than the central FUV profile, potentially indicating conditions favorable for the escape of ionizing radiation. We discuss our results in the context of high-redshift galaxies, cosmological simulations, evolutionary studies of the circumgalactic medium in emission, and the emission of ionizing radiation.

20 page, 14 figures, 6 tables. Accepted for publication in MNRAS

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