Turbulent gas accretion between supermassive black-holes and star-forming rings in the circumnuclear disk
Abstract
While supermassive black-holes are known to co-evolve with their host galaxy, the precise nature and origin of this co-evolution is not clear. In this paper we explore the possible connection between star formation and black-hole growth in the circumnuclear disk (CND) to probe this connection in the vicinity close to the black-hole. We adopt here a circumnuclear disk model developed by previous works and explore both the dependence on the star formation recipe as well as the role of the gravitational field, which can be dominated by the central black-hole, the CND itself or the host galaxy. A specific emphasis is put on the turbulence regulated star formation model to explore the impact of a realistic star formation recipe. It is shown that this model helps to introduce realistic fluctuations in the black-hole and star formation rate, without overestimating them. Consistent with previous works, we show that the final black-hole masses are rather insensitive to the masses of the initial seeds, even for seed masses of up to 106M⊙. In addition, we apply our model to the formation of high-redshift quasars, as well as to the nearby system
- Publication:
-
Astronomy and Astrophysics
- Pub Date:
- June 2017
- DOI:
- arXiv:
- arXiv:1703.05836
- Bibcode:
- 2017A&A...602A..84C
- Keywords:
-
- quasars: general;
- galaxies: high-redshift;
- stars: formation;
- black hole physics;
- accretion;
- accretion disks;
- turbulence;
- Astrophysics - Astrophysics of Galaxies
- E-Print:
- 12 pages, 17 figures, 3 tables, accepted for publication with A&