Low-J CO Line Ratios from Single-dish CO Mapping Surveys and PHANGS-ALMA

Author:

Leroy Adam K.ORCID,Rosolowsky ErikORCID,Usero AntonioORCID,Sandstrom KarinORCID,Schinnerer EvaORCID,Schruba Andreas,Bolatto Alberto D.ORCID,Sun JiayiORCID,Barnes Ashley. T.ORCID,Belfiore FrancescoORCID,Bigiel FrankORCID,den Brok Jakob S.ORCID,Cao YixianORCID,Chiang I-DaORCID,Chevance MélanieORCID,Dale Daniel A.ORCID,Eibensteiner CosimaORCID,Faesi Christopher M.ORCID,Glover Simon C. O.ORCID,Hughes AnnieORCID,Jiménez Donaire María J.ORCID,Klessen Ralf S.ORCID,Koch Eric W.ORCID,Kruijssen J. M. DiederikORCID,Liu DaizhongORCID,Meidt Sharon E.ORCID,Pan Hsi-AnORCID,Pety JérômeORCID,Puschnig JohannesORCID,Querejeta MiguelORCID,Saito ToshikiORCID,Sardone AmyORCID,Watkins Elizabeth J.ORCID,Weiss AxelORCID,Williams Thomas G.ORCID

Abstract

Abstract We measure the low-J CO line ratios R 21 ≡ CO (2–1)/CO (1–0), R 32 ≡ CO (3–2)/CO (2–1), and R 31 ≡CO (3–2)/CO (1–0) using whole-disk CO maps of nearby galaxies. We draw CO (2–1) from PHANGS-ALMA, HERACLES, and follow-up IRAM surveys; CO (1–0) from COMING and the Nobeyama CO Atlas of Nearby Spiral Galaxies; and CO (3–2) from the James Clerk Maxwell Telescope Nearby Galaxy Legacy Survey and Atacama Pathfinder Experiment Large APEX Sub-Millimetre Array mapping. All together, this yields 76, 47, and 29 maps of R 21, R 32, and R 31 at 20″ ∼ 1.3 kpc resolution, covering 43, 34, and 20 galaxies. Disk galaxies with high stellar mass, log ( M / M ) = 10.25 11 , and star formation rate (SFR) = 1–5 M yr−1, dominate the sample. We find galaxy-integrated mean values and a 16%–84% range of R 21 = 0.65 (0.50–0.83), R 32 = 0.50 (0.23–0.59), and R 31 = 0.31 (0.20–0.42). We identify weak trends relating galaxy-integrated line ratios to properties expected to correlate with excitation, including SFR/M and SFR/L CO. Within galaxies, we measure central enhancements with respect to the galaxy-averaged value of ∼ 0.18 0.14 + 0.09 dex for R 21, 0.27 0.15 + 0.13 dex for R 31, and 0.08 0.09 + 0.11 dex for R 32. All three line ratios anticorrelate with galactocentric radius and positively correlate with the local SFR surface density and specific SFR, and we provide approximate fits to these relations. The observed ratios can be reasonably reproduced by models with low temperature, moderate opacity, and moderate densities, in good agreement with expectations for the cold interstellar medium. Because the line ratios are expected to anticorrelate with the CO (1–0)-to-H2 conversion factor, α CO 1 0 , these results have general implications for the interpretation of CO emission from galaxies.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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