Evidence of boosted 13CO/12CO ratio in early-type galaxies in dense environments
Katherine Alatalo (1), Alison F. Crocker (2,3), Susanne Aalto (4),, Timothy A. Davis (5,6), Kristina Nyland (7), Martin Bureau (8), Pierre-Alain, Duc (9), Davor Krajnovic (10), Lisa M. Young (11) ((1) IPAC/Caltech, (2) U., Toledo, (3) Reed, (4) Chalmers, (5) ESO - Garching

TL;DR
This study measures the $^{13}$CO/$^{12}$CO ratio in early-type galaxies, finding higher ratios in dense environments like clusters, suggesting environmental effects influence molecular gas properties.
Contribution
It provides the first systematic comparison of $^{13}$CO/$^{12}$CO ratios in early-type galaxies across different environments, revealing environmental dependence.
Findings
Virgo cluster and group galaxies have about twice the $^{13}$CO/$^{12}$CO ratio of field galaxies.
Galaxies with settled gas morphology show boosted $^{13}$CO/$^{12}$CO ratios.
No significant radial gradient in $^{13}$CO/$^{12}$CO ratio within individual galaxies.
Abstract
We present observations of CO(1-0) in 17 Combined Array for Research in Millimeter Astronomy (CARMA) Atlas3D early-type galaxies (ETGs), obtained simultaneously with CO(1-0) observations. The CO in six ETGs is sufficiently bright to create images. In these 6 sources, we do not detect any significant radial gradient in the CO/CO ratio between the nucleus and the outlying molecular gas. Using the CO channel maps as 3D masks to stack the CO emission, we are able to detect 15/17 galaxies to (and 12/17 to at least 5) significance in a spatially integrated manner. Overall, ETGs show a wide distribution of CO/CO ratios, but Virgo cluster and group galaxies preferentially show a CO/CO ratio about 2 times larger than field galaxies, although this could also be due to a mass dependence, or the CO…
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