CO Multi-line Imaging of Nearby Galaxies (COMING). IX. $^{12}$CO($J$=2-1)/$^{12}$CO($J$=1-0) line ratio on kiloparsec scales
Yoshiyuki Yajima (1), Kazuo Sorai (1,2), Yusuke Miyamoto (3), Kazuyuki, Muraoka (4), Nario Kuno (2,5), Hiroyuki Kaneko (6,3), Tsutomu T. Takeuchi, (7,8), Atsushi Yasuda (2), Takahiro Tanaka (2), Kana Morokuma-Matsui (9),, Masato I. N. Kobayashi (10,11) ((1) Hokkaido University

TL;DR
This study investigates the variation of the $^{12}$CO($J$=2-1)/$^{12}$CO($J$=1-0) line ratio in 24 nearby galaxies, revealing its dependence on physical conditions and implications for molecular gas mass estimates.
Contribution
It provides the first detailed analysis of $R_{2/1}$ variations on kiloparsec scales across multiple galaxies, highlighting the impact of assuming a constant ratio.
Findings
Median $R_{2/1}$ is 0.61 across galaxies.
Assuming a constant $R_{2/1}$ of 0.7 can cause 20-35% errors in molecular gas mass.
$R_{2/1}$ correlates with star formation rate and infrared color.
Abstract
While molecular gas mass is usually derived from CO(=1-0) - the most fundamental line to explore molecular gas - it is often derived from CO(=2-1) assuming a constant CO(=2-1)/CO(=1-0) line ratio (). We present variations of and effects of the assumption that is a constant in 24 nearby galaxies using CO data obtained with the Nobeyama 45-m radio telescope and IRAM 30-m telescope. The median of for all galaxies is 0.61, and the weighted mean of by CO(=1-0) integrated-intensity is 0.66 with a standard deviation of 0.19. The radial variation of shows that it is high (~0.8) in the inner ~1 kpc while its median in disks is nearly constant at 0.60 when all galaxies are compiled. In the case that the constant of 0.7 is adopted, we found that the total molecular gas mass…
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