Molecular Gas Properties on Cloud Scales Across the Local Star-forming Galaxy Population
Abstract
Using the PHANGS-ALMA CO (2-1) survey, we characterize molecular gas properties on 100 pc scales across 102,778 independent sightlines in 70 nearby galaxies. This yields the best synthetic view of molecular gas properties on cloud scales across the local star-forming galaxy population obtained to date. Consistent with previous studies, we observe a wide range of molecular gas surface densities (3.4 dex), velocity dispersions (1.7 dex), and turbulent pressures (6.5 dex) across the galaxies in our sample. Under simplifying assumptions about sub-resolution gas structure, the inferred virial parameters suggest that the kinetic energy of the molecular gas typically exceeds its self-gravitational binding energy at 100 pc scales by a modest factor (1.3 on average). We find that the cloud-scale surface density, velocity dispersion, and turbulent pressure (1) increase towards the inner parts of galaxies, (2) are exceptionally high in the centers of barred galaxies (where the gas also appears less gravitationally bound), and (3) are moderately higher in spiral arms than in inter-arm regions. The galaxy-wide averages of these gas properties also correlate with the integrated stellar mass, star formation rate, and offset from the star-forming main sequence of the host galaxies. These correlations persist even when we exclude regions with extraordinary gas properties in galaxy centers, which contribute significantly to the inter-galaxy variations. Our results provide key empirical constraints on the physical link between molecular cloud populations and their galactic environment.
Keywords
Cite
@article{arxiv.2009.01842,
title = {Molecular Gas Properties on Cloud Scales Across the Local Star-forming Galaxy Population},
author = {Jiayi Sun and Adam K. Leroy and Eva Schinnerer and Annie Hughes and Erik Rosolowsky and Miguel Querejeta and Andreas Schruba and Daizhong Liu and Toshiki Saito and Cinthya N. Herrera and Christopher Faesi and Antonio Usero and Jérôme Pety and J. M. Diederik Kruijssen and Eve C. Ostriker and Frank Bigiel and Guillermo A. Blanc and Alberto D. Bolatto and Médéric Boquien and Mélanie Chevance and Daniel A. Dale and Sinan Deger and Eric Emsellem and Simon C. O. Glover and Kathryn Grasha and Brent Groves and Jonathan Henshaw and Maria J. Jimenez-Donaire and Jenny J. Kim and Ralf S. Klessen and Kathryn Kreckel and Janice C. Lee and Sharon Meidt and Karin Sandstrom and Amy E. Sardone and Dyas Utomo and Thomas G. Williams},
journal= {arXiv preprint arXiv:2009.01842},
year = {2023}
}
Comments
9 pages + appendices, ApJL in press. Data tables available at https://www.canfar.net/storage/list/phangs/RELEASES/Sun_etal_2020b