English

The dust and cold gas content of local star forming galaxies

Astrophysics of Galaxies 2020-06-24 v1 Cosmology and Nongalactic Astrophysics

Abstract

We use dust masses (MdustM_{dust}) derived from far-infrared data and molecular gas masses (MmolM_{mol}) based on CO luminosity, to calibrate proxies based on a combination of the galaxy Balmer decrement, disk inclination and gas metallicity. We use such proxies to estimate MdustM_{dust} and MmolM_{mol} in the local SDSS sample of star-forming galaxies (SFGs). We study the distribution of MdustM_{dust} and MmolM_{mol} along and across the Main Sequence (MS) of SFGs. We find that MdustM_{dust} and MmolM_{mol} increase rapidly along the MS with increasing stellar mass (MM_*), and more marginally across the MS with increasing SFR (or distance from the relation). The dependence on MM_* is sub-linear for both MdustM_{dust} and MmolM_{mol}. Thus, the fraction of dust (fdustf_{dust}) and molecular gas mass (fmolf_{mol}) decreases monotonically towards large MM_*. The star formation efficiency (SFE, the inverse of the molecular gas depletion time) depends strongly on the distance from the MS and it is constant along the MS. As nearly all galaxies in the sample are central galaxies, we estimate the dependence of fdustf_{dust} and fgasf_{gas} on the host halo mass and find a tight anti-correlation. As the region where the MS is bending is numerically dominated by massive halos, we conclude that the bending of the MS is due to lower availability of molecular gas mass in massive halos rather than a lower efficiency in forming stars.

Keywords

Cite

@article{arxiv.2006.09224,
  title  = {The dust and cold gas content of local star forming galaxies},
  author = {P. Popesso and A. Concas and L. Morselli and G. Rodighiero and A. Enia and S. Qua},
  journal= {arXiv preprint arXiv:2006.09224},
  year   = {2020}
}

Comments

Accepted for publication in MNRAS, 12 pages, 9 figures