Cloud Scale ISM Structure and Star Formation in M51
Abstract
We compare the structure of molecular gas at pc resolution to the ability of gas to form stars across the disk of the spiral galaxy M51. We break the PAWS survey into pc and kpc resolution elements, and within each we estimate the molecular gas depletion time (), the star formation efficiency per free fall time (), and the mass-weighted cloud-scale (40 pc) properties of the molecular gas: surface density, , line width, , and , a parameter that traces the boundedness of the gas. We show that the cloud-scale surface density appears to be a reasonable proxy for mean volume density. Applying this, we find a typical star formation efficiency per free-fall time, , lower than adopted in many models and found for local clouds. More, the efficiency per free fall time anti-correlates with both and , in some tension with turbulent star formation models. The best predictor of the rate of star formation per unit gas mass in our analysis is , tracing the strength of self gravity, with . The sense of the correlation is that gas with stronger self-gravity (higher ) forms stars at a higher rate (low ). The different regions of the galaxy mostly overlap in as a function of , so that low explains the surprisingly high found towards the inner spiral arms found by by Meidt et al. (2013).
Cite
@article{arxiv.1706.08540,
title = {Cloud Scale ISM Structure and Star Formation in M51},
author = {Adam K. Leroy and Eva Schinnerer and Annie Hughes and J. M. Diederik Kruijssen and Sharon Meidt and Andreas Schruba and Jiayi Sun and Frank Bigiel and Gonzalo Aniano and Guillermo A. Blanc and Alberto Bolatto and Mélanie Chevance and Dario Colombo and Molly Gallagher and Santiago Garcia-Burillo and Carsten Kramer and Miguel Querejeta and Jerome Pety and Todd A. Thompson and Antonio Usero},
journal= {arXiv preprint arXiv:1706.08540},
year = {2017}
}
Comments
Accepted for publication in the Astrophysical Journal, 22 pages, 11 figures, email for access to data table before publication, for high resolution version before publication: http://www.astronomy.ohio-state.edu/~leroy.42/m51_cloudsf.pdf