The Star Formation Efficiency per Free Fall Time in Nearby Galaxies
Abstract
We estimate the star formation efficiency per gravitational free fall time, , from observations of nearby galaxies with resolution matched to the typical size of a Giant Molecular Cloud. This quantity, , is theoretically important but so far has only been measured for Milky Way clouds or inferred indirectly in a few other galaxies. Using new, high resolution CO imaging from the PHANGS-ALMA survey, we estimate the gravitational free-fall time at 60 to 120 pc resolution, and contrast this with the local molecular gas depletion time to estimate . Assuming a constant thickness of the molecular gas layer ( pc) across the whole sample, the median value of in our sample is . We find a mild scale-dependence, with higher measured at coarser resolution. Individual galaxies show different values of , with the median ranging from to . We find the highest in our lowest mass targets, reflecting both long free-fall times and short depletion times, though we caution that both measurements are subject to biases in low mass galaxies. We estimate the key systematic uncertainties, and show the dominant uncertainty to be the estimated line-of-sight depth through the molecular gas layer and the choice of star formation tracers.
Keywords
Cite
@article{arxiv.1806.11121,
title = {The Star Formation Efficiency per Free Fall Time in Nearby Galaxies},
author = {Dyas Utomo and Jiayi Sun and Adam K. Leroy and J. M. Diederik Kruijssen and Eva Schinnerer and Andreas Schruba and Frank Bigiel and Guillermo A. Blanc and Melanie Chevance and Eric Emsellem and Cinthya Herrera and Alexander P. S. Hygate and Kathryn Kreckel and Eve C. Ostriker and Jerome Pety and Miguel Querejeta and Erik Rosolowsky and Karin M. Sandstrom and Antonio Usero},
journal= {arXiv preprint arXiv:1806.11121},
year = {2018}
}
Comments
10 pages, 3 figures, and 2 tables. Accepted for publication in ApJ Letters