Cloud-Scale Molecular Gas Properties in 15 Nearby Galaxies
Abstract
We measure the velocity dispersion, , and surface density, , of the molecular gas in nearby galaxies from CO spectral line cubes with spatial resolution - pc, matched to the size of individual giant molecular clouds. Combining galaxies from the PHANGS-ALMA survey with targets from the literature, we characterize independent sightlines where CO is detected at good significance. and show a strong positive correlation, with the best-fit power law slope close to the expected value for resolved, self-gravitating clouds. This indicates only weak variation in the virial parameter , which is - for most galaxies. We do, however, observe enormous variation in the internal turbulent pressure , which spans across our sample. We find , , and to be systematically larger in more massive galaxies. The same quantities appear enhanced in the central kpc of strongly barred galaxies relative to their disks. Based on sensitive maps of M31 and M33, the slope of the - relation flattens at , leading to high for a given and high apparent . This echoes results found in the Milky Way, and likely originates from a combination of lower beam filling factors and a stronger influence of local environment on the dynamical state of molecular gas in the low density regime.
Cite
@article{arxiv.1805.00937,
title = {Cloud-Scale Molecular Gas Properties in 15 Nearby Galaxies},
author = {Jiayi Sun and Adam K. Leroy and Andreas Schruba and Erik Rosolowsky and Annie Hughes and J. M. Diederik Kruijssen and Sharon Meidt and Eva Schinnerer and Guillermo A. Blanc and Frank Bigiel and Alberto D. Bolatto and Mélanie Chevance and Brent Groves and Cinthya N. Herrera and Alexander P. S. Hygate and Jérôme Pety and Miguel Querejeta and Antonio Usero and Dyas Utomo},
journal= {arXiv preprint arXiv:1805.00937},
year = {2020}
}
Comments
Accepted for publication in ApJ. 45 pages, 11 figures, 8 tables, 4 Appendices; key results summarized in Figure 10. Machine-readable table can be downloaded at http://www.astronomy.ohio-state.edu/~sun.1608/datafile3.txt prior to publication. For a brief video describing the main results of this paper, please see https://www.youtube.com/watch?v=-_eL7t1PVq8&t