xGASS: Total cold gas scaling relations and molecular-to-atomic gas ratios of galaxies in the local Universe
Barbara Catinella, Am\'elie Saintonge, Steven Janowiecki, Luca, Cortese, Romeel Dav\'e, Jenna J. Lemonias, Andrew P. Cooper, David, Schiminovich, Cameron B. Hummels, Silvia Fabello, Katinka Ger\'eb, Virginia, Kilborn, and Jing Wang

TL;DR
This study provides a comprehensive analysis of cold gas content in local galaxies, revealing how atomic and molecular gas ratios vary with galaxy properties and extending previous scaling relations.
Contribution
It extends the HI scaling relations to lower stellar masses and quantifies total cold gas fractions and molecular-to-atomic ratios across a large galaxy sample.
Findings
Atomic gas fractions increase with decreasing stellar mass.
Total gas reservoirs are HI-dominated across the stellar mass range.
Molecular-to-atomic gas ratio varies widely and depends on galaxy structure.
Abstract
We present the extended GALEX Arecibo SDSS Survey (xGASS), a gas fraction-limited census of the atomic (HI) gas content of 1179 galaxies selected only by stellar mass () and redshift (). This includes new Arecibo observations of 208 galaxies, for which we release catalogs and HI spectra. In addition to extending the GASS HI scaling relations by one decade in stellar mass, we quantify total (atomic+molecular) cold gas fractions and molecular-to-atomic gas mass ratios, , for the subset of 477 galaxies observed with the IRAM 30 m telescope. We find that atomic gas fractions keep increasing with decreasing stellar mass, with no sign of a plateau down to . Total gas reservoirs remain HI-dominated across our full stellar mass range, hence total gas fraction scaling relations closely resemble atomic ones, but…
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