On the rate of black hole binary mergers in galactic nuclei due to dynamical hardening
arXiv:1711.10494 · doi:10.1093/mnras/stx3134
Abstract
We assess the contribution of dynamical hardening by direct three-body scattering interactions to the rate of stellar-mass black hole binary (BHB) mergers in galactic nuclei. We derive an analytic model for the single-binary encounter rate in a nucleus with spherical and disk components hosting a super-massive black hole (SMBH). We determine the total number of encounters needed to harden a BHB to the point that inspiral due to gravitational wave emission occurs before the next three-body scattering event. This is done independently for both the spherical and disk components. Using a Monte Carlo approach, we refine our calculations for to include gravitational wave emission between scattering events. For astrophysically plausible models we find that typically 10. We find two separate regimes for the efficient dynamical hardening of BHBs: (1) spherical star clusters with high central densities, low velocity dispersions and no significant Keplerian component; and (2) migration traps in disks around SMBHs lacking any significant spherical stellar component in the vicinity of the migration trap, which is expected due to effective orbital inclination reduction of any spherical population by the disk. We also find a weak correlation between the ratio of the second-order velocity moment to velocity dispersion in galactic nuclei and the rate of BHB mergers, where this ratio is a proxy for the ratio between the rotation- and dispersion-supported components. Because disks enforce planar interactions that are efficient in hardening BHBs, particularly in migration traps, they have high merger rates that can contribute significantly to the rate of BHB mergers detected by the advanced Laser Interferometer Gravitational-Wave Observatory.
13 pages, 9 figures, accepted for publication in MNRAS
References in corpus (7)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- Gaps, Rings, and Non-Axisymmetric Structures in Protoplanetary Disks - From Simulations to ALMA Observations
- Intermediate mass black holes in AGN disks II. Model predictions & observational constraints
- On the coexistence of stellar-mass and intermediate-mass black holes in globular clusters
- A numerical study of vector resonant relaxation
- On the origins of enigmatic stellar populations in Local Group galactic nuclei
- The chaotic four-body problem in Newtonian gravity I: Identical point-particles
Cited by in corpus (16)
- Constraining the primordial black hole scenario with Bayesian inference and machine learning: the GWTC-2 gravitational wave catalog
- Mass-gap Mergers in Active Galactic Nuclei
- The Population III origin of GW190521
- High rate of gravitational waves mergers from flyby perturbations of wide black-hole triples in the field
- Hot Circumsingle Disks Drive Binary Black Hole Mergers in Active Galactic Nucleus Disks
- In Search of the Thermal Eccentricity Distribution
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Astrophysical implications of GW190412 as a remnant of a previous black-hole merger
- Dynamical evolution of Population III stellar systems and the resulting binary statistics
- Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events
- Spin Evolution of Stellar-mass Black Holes Embedded in AGN disks: Orbital Eccentricity Produces Retrograde Circumstellar Flows
- Prograde and Retrograde Gas Flow around Disk-embedded Companions: Dependence on Eccentricity, Mass and Disk Properties
- Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?
- Binaries are softer than they seem: Effects of an external potential on the scattering dynamics of binaries
- Drifting through the medium: kicks and self-propulsion of binaries within accretion disks and other environments
- Effects of an Immortal Stellar Population in AGN Disks