English

How galaxies form stars: the connection between local and global star formation in galaxy simulations

Astrophysics of Galaxies 2018-06-27 v2

Abstract

Using a suite of isolated LL_\star galaxy simulations, we show that global depletion times and star-forming gas mass fractions in simulated galaxies exhibit systematic and well-defined trends as a function of the local star formation efficiency per freefall time, ϵff\epsilon_{\rm ff}, strength of stellar feedback, and star formation threshold. We demonstrate that these trends can be reproduced and explained by a simple physical model of global star formation in galaxies. Our model is based on mass conservation and the idea of gas cycling between star-forming and non-star-forming states on certain characteristic time scales under the influence of dynamical and feedback processes. Both the simulation results and our model predictions exhibit two limiting regimes with rather different dependencies of global galactic properties on the local parameters. When ϵff\epsilon_{\rm ff} is small and feedback is inefficient, the total star-forming mass fraction, fsff_{\rm sf}, is independent of ϵff\epsilon_{\rm ff} and the global depletion time, τdep\tau_{\rm dep}, scales inversely with ϵff\epsilon_{\rm ff}. When ϵff\epsilon_{\rm ff} is large or feedback is very efficient, these trends are reversed: fsfϵff1f_{\rm sf} \propto \epsilon_{\rm ff}^{-1} and τdep\tau_{\rm dep} is independent of ϵff\epsilon_{\rm ff} but scales linearly with the feedback strength. We also compare our results with the observed depletion times and mass fractions of star-forming and molecular gas and show that they provide complementary constraints on ϵff\epsilon_{\rm ff} and the feedback strength. We show that useful constraints on ϵff\epsilon_{\rm ff} can also be obtained using measurements of the depletion time and its scatter on different spatial scales.

Keywords

Cite

@article{arxiv.1803.00007,
  title  = {How galaxies form stars: the connection between local and global star formation in galaxy simulations},
  author = {Vadim A. Semenov and Andrey V. Kravtsov and Nickolay Y. Gnedin},
  journal= {arXiv preprint arXiv:1803.00007},
  year   = {2018}
}

Comments

17 pages + appendix, 13 figures, 1 table; accepted for publication in ApJ