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May 1, 2022The Astrophysical Journal164 citationsOpen Access

The Low-redshift Lyman Continuum Survey. II. New Insights into LyC Diagnostics

SFSophia R. FluryAJAnne E. JaskotHFHenry C. Ferguson

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Abstract

Abstract The Lyman continuum (LyC) cannot be observed at the epoch of reionization ( z ≳ 6) owing to intergalactic H i absorption. To identify LyC emitters (LCEs) and infer the fraction of escaping LyC, astronomers have developed various indirect diagnostics of LyC escape. Using measurements of the LyC from the Low-redshift Lyman Continuum Survey (LzLCS), we present the first statistical test of these diagnostics. While optical depth indicators based on Ly α , such as peak velocity separation and equivalent width, perform well, we also find that other diagnostics, such as the O iii /O ii flux ratio and star formation rate surface density, predict whether a galaxy is an LCE. The relationship between these galaxy properties and the fraction of escaping LyC flux suggests that LyC escape depends strongly on H i column density, ionization parameter, and stellar feedback. We find that LCEs occupy a range of stellar masses, metallicities, star formation histories, and ionization parameters, which may indicate episodic and/or different physical causes of LyC escape.

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Flury et al. (2022) studied this question.

synapsesocial.com/papers/6a1d790073c56dd1bd2fb8fehttps://doi.org/10.3847/1538-4357/ac61e4
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