Low-redshift Lyman Continuum Survey: Radio continuum properties of low-$z$ Lyman continuum emitters
Omkar Bait, Sanchayeeta Borthakur, Daniel Schaerer, Emmanuel Momjian,, Biny Sebastian, Alberto Saldana-Lopez, Sophia R. Flury, John Chisholm, Rui, Marques-Chaves, Anne E. Jaskot, Harry C. Ferguson, Gabor Worseck, Zhiyuan Ji,, Lena Komarova, Maxime Trebitsch, Matthew J. Hayes

TL;DR
This study investigates the radio continuum properties of low-redshift Lyman continuum emitters, revealing correlations between radio spectral index and LyC escape fraction, and suggesting physical mechanisms influencing photon escape.
Contribution
First analysis of radio properties of low-$z$ LyC emitters, linking radio spectral index to LyC escape fraction and underlying physical processes.
Findings
Strong leakers have flat radio spectral indices.
Non-leakers exhibit steep radio spectra.
Radio spectral index correlates with LyC escape fraction.
Abstract
Sources that leak Lyman-continuum (LyC) photons and lead to the reionisation of the universe are intensely studied using multiple observing facilities. Recently, the Low-redshift LyC Survey (LzLCS) has found the first large sample of LyC emitting galaxies at low redshift () with the Hubble Space Telescope/Cosmic Origins Spectrograph. The LzLCS sample contains a robust estimate of the LyC escape fraction () for 66 galaxies spanning a wide range of . Here we, for the first time, aim to study the radio continuum (RC) properties of LzLCS sources and their dependence on . We present Karl G. Jansky Very Large Array RC observations at C (4-8 GHz), S (2-4 GHz) and L (1-2 GHz) bands for a sub-sample of the LzLCS sources. The radio spectral index () spans a wide…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Radio Astronomy Observations and Technology · Astrophysics and Cosmic Phenomena
