English

Black hole accretion preferentially occurs in gas rich galaxies

Astrophysics of Galaxies 2015-06-19 v1 Cosmology and Nongalactic Astrophysics

Abstract

We have investigated the gas content of a sample of several hundred AGN host galaxies at z<<1 and compared it with a sample of inactive galaxies, matched in bins of stellar mass and redshift. Gas masses have been inferred from the dust masses, obtained by stacked Herschel far-IR and sub-mm data in the GOODS and COSMOS fields, under reasonable assumptions and metallicity scaling relations for the dust-to-gas ratio. We find that AGNs are on average hosted in galaxies much more gas rich than inactive galaxies. In the vast majority of stellar mass bins, the average gas content of AGN hosts is higher than in inactive galaxies. The difference is up to a factor of ten higher in low stellar mass galaxies, with a significance of 6.5σ\sigma. In almost half of the AGN sample the gas content is three times higher than in the control sample of inactive galaxies. Our result strongly suggests that the probability of having an AGN activated is simply driven by the amount of gas in the host galaxy; this can be explained in simple terms of statistical probability of having a gas cloud falling into the gravitational potential of the black hole. The increased probability of an AGN being hosted by a star-forming galaxy, identified by previous works, may be a consequence of the relationship between gas content and AGN activity, found in this paper, combined with the Schmidt-Kennicutt law for star formation.

Keywords

Cite

@article{arxiv.1403.7966,
  title  = {Black hole accretion preferentially occurs in gas rich galaxies},
  author = {Fabio Vito and Roberto Maiolino and Paola Santini and Marcella Brusa and Andrea Comastri and Giovanni Cresci and Duncan Farrah and Alberto Franceschini and Roberto Gilli and Gian Luigi Granato and Carlotta Gruppioni and Dieter Lutz and Filippo Mannucci and Francesca Pozzi and David J. Rosario and Douglas Scott and Marco Viero and Cristian Vignali},
  journal= {arXiv preprint arXiv:1403.7966},
  year   = {2015}
}

Comments

Accepted for pubblication in MNRAS. 7 pages, 4 figures