Estimating the molecular gas mass of low-redshift galaxies from a combination of mid-infrared luminosity and optical properties
Yang Gao, Ting Xiao, Cheng Li, Xue-Jian Jiang, Qing-hua Tan, Yu Gao,, Christine D. Wilson, Martin Bureau, Amelie Saintonge, Jos'e R., S'anchez-Gallego, Toby Brown, Christopher J. Clark, Ho Seong Hwang, Isabella, Lamperti, Lin Lin, Lijie Liu, Dengrong Lu, Hsi-An Pan, Jixian Sun

TL;DR
This paper develops a new estimator combining mid-infrared luminosity and optical properties to accurately determine the molecular gas mass in low-redshift galaxies, enabling large-scale statistical studies.
Contribution
It introduces a novel linear estimator for CO luminosity based on mid-infrared luminosity, stellar mass, and color, improving accuracy across galaxy types.
Findings
The estimator achieves 0.18 dex scatter in log CO luminosity.
Application reveals a gas-poor early-type galaxy population.
The method allows efficient molecular gas mass estimation from limited data.
Abstract
We present CO(J=1-0) and/or CO(J=2-1) spectroscopy for 31 galaxies selected from the ongoing MaNGA survey, obtained with multiple telescopes. This sample is combined with CO observations from the literature to study the correlation of the CO luminosities () with the mid-infrared luminosities at 12 () and 22 m (), as well as the dependence of the residuals on a variety of galaxy properties. The correlation with is tighter and more linear, but galaxies with relatively low stellar masses and blue colors fall significantly below the mean relation. We propose a new estimator of the CO(1-0) luminosity (and thus the total molecular gas mass) that is a linear combination of three parameters: , and . We show that, with a scatter of only 0.18 dex in log…
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