Hydrodynamical Simulations of Black Hole Binary Formation in AGN Disks
Abstract
We study close encounters between two single black holes (BHs) embedded in an AGN disk using a series of global 2D hydrodynamics simulations. We find that when the disk density is sufficiently high, bound BH binaries can be formed by the collision of their circum-single disks. Our analysis demonstrates that, after a BH pair passes the pericenter of their relative trajectory, post-collision gas drag may slow down the BHs, possibly forcing the two BHs to stay tightly bound. A binary formed by a close encounter can have a compact semimajor axis, large eccentricity, and retrograde orbital angular momentum. We provide a fitting formula that can accurately predict whether a close encounter can form a binary based on the gas mass and the incoming energy of the encounter. This fitting formula can be easily implemented in other long-term simulations that study the dynamical evolution of BHs in active galactic nucleus disks.
- Publication:
-
The Astrophysical Journal
- Pub Date:
- February 2023
- DOI:
- arXiv:
- arXiv:2211.10357
- Bibcode:
- 2023ApJ...944L..42L
- Keywords:
-
- Active galactic nuclei;
- Black holes;
- Galaxy accretion disks;
- Gravitational wave sources;
- Hydrodynamical simulations;
- Orbital evolution;
- 16;
- 162;
- 562;
- 677;
- 767;
- 1178;
- Astrophysics - High Energy Astrophysical Phenomena;
- Astrophysics - Astrophysics of Galaxies
- E-Print:
- 10 pages, 5 figures