English

Galaxy Cold Gas Contents in Modern Cosmological Hydrodynamic Simulations

Astrophysics of Galaxies 2020-07-15 v2

Abstract

We present a comparison of galaxy atomic and molecular gas properties in three recent cosmological hydrodynamic simulations, Simba, EAGLE, and Illustris-TNG, versus observations from z02z\sim 0-2. These simulations all rely on similar sub-resolution prescriptions to model cold interstellar gas which they cannot represent directly, and qualitatively reproduce the observed z0z\approx 0 HI and H2_2 mass functions (HIMF, H2MF), CO(1-0) luminosity functions (COLF), and gas scaling relations versus stellar mass, specific star formation rate, and stellar surface density μ\mu_*, with some quantitative differences. To compare to the COLF, we apply an H2_2-to-CO conversion factor to the simulated galaxies based on their average molecular surface density and metallicity, yielding substantial variations in αCO\alpha_{\rm CO} and significant differences between models. Using this, predicted z=0z=0 COLFs agree better with data than predicted H2MFs. Out to z2z\sim 2, EAGLE's and Simba's HIMF and COLF strongly increase, while TNG's HIMF declines and COLF evolves slowly. EAGLE and Simba reproduce high LCO10L_{\rm CO1-0} galaxies at z12z\sim 1-2 as observed, owing partly to a median αCO(z=2)1\alpha_{\rm CO}(z=2)\sim 1 versus αCO(z=0)3\alpha_{\rm CO}(z=0)\sim 3. Examining \HI, H2_2, and CO scaling relations, their trends with MM_* are broadly reproduced in all models, but EAGLE yields too little HI in green valley galaxies, TNG and Simba overproduce cold gas in massive galaxies, and Simba overproduces molecular gas in small systems. Using Simba variants that exclude individual AGN feedback modules, we find that Simba's AGN jet feedback is primarily responsible by lowering cold gas contents from z10z\sim 1\to0 by suppressing cold gas in M>1010MM_*> 10^{10}{\rm M}_\odot galaxies, while X-ray feedback suppresses the formation of high-μ\mu_* systems.

Keywords

Cite

@article{arxiv.2002.07226,
  title  = {Galaxy Cold Gas Contents in Modern Cosmological Hydrodynamic Simulations},
  author = {Romeel Davé and Robert A. Crain and Adam R. H. Stevens and Desika Narayanan and Amelie Saintonge and Barbara Catinella and Luca Cortese},
  journal= {arXiv preprint arXiv:2002.07226},
  year   = {2020}
}

Comments

22 pages, MNRAS accepted