English

The rapid growth phase of supermassive black holes

Astrophysics of Galaxies 2018-09-19 v2

Abstract

We investigate the rapid growth phase of supermassive black holes (BHs) within the hydrodynamical cosmological \eagle simulation. This non-linear phase of BH growth occurs within \simLL_{*} galaxies, embedded between two regulatory states of the galaxy host: in sub LL_{*} galaxies efficient stellar feedback regulates the gas inflow onto the galaxy and significantly reduces the growth of the central BH, while in galaxies more massive than LL_{*} efficient AGN feedback regulates the gas inflow onto the galaxy and curbs further non-linear BH growth. We find evolving critical galaxy and halo mass scales at which rapid BH growth begins. Galaxies in the low-redshift Universe transition into the rapid BH growth phase in haloes that are approximately an order of magnitude more massive than their high-redshift counterparts (\M{200} 1012.4\approx 10^{12.4}~\Msol at z0z \approx 0 decreasing to \M{200} 1011.2\approx 10^{11.2}~\Msol at z6z \approx 6). Instead, BHs enter the rapid growth phase at a fixed critical halo virial temperature (Tvir105.6T_{\mathrm{vir}} \approx 10^{5.6}~K). We additionally show that major galaxy--galaxy interactions (μ14\mu \geq \frac{1}{4}, where μ\mu is the stellar mass ratio) play a substantial role in triggering the rapid growth phase of BHs in the low-redshift Universe, whilst potentially having a lower influence at high redshift. Approximately 40\% of BHs that initiate the rapid BH growth phase at z0z \approx 0 do so within ±0.5\pm 0.5 dynamical times of a major galaxy--galaxy merger, a fourfold increase above what is expected from the background merger rate. We find that minor mergers (110μ<14\frac{1}{10} \leq \mu < \frac{1}{4}) have a substantially lower influence in triggering the rapid growth phase at all epochs.

Keywords

Cite

@article{arxiv.1805.08293,
  title  = {The rapid growth phase of supermassive black holes},
  author = {Stuart McAlpine and Richard G. Bower and David J. Rosario and Robert A. Crain and Joop Schaye and Tom Theuns},
  journal= {arXiv preprint arXiv:1805.08293},
  year   = {2018}
}

Comments

12 pages, 8 figures, accepted to MNRAS