Evolution of binary supermassive black holes and the final-parsec problem
arXiv:1411.1762 · doi:10.1017/S1743921315007607
Abstract
I review the evolution of binary supermassive black holes and focus on the stellar-dynamical mechanisms that may help to overcome the final-parsec problem - the possible stalling of the binary at a separation much larger than is required for an efficient gravitational wave emission. Recent N-body simulations have suggested that a departure from spherical symmetry in the nucleus of the galaxy may keep the rate of interaction of stars with the binary at a high enough level so that the binary continues to shrink rather rapidly. However, a major problem of all these simulations is that they do not probe the regime where collisionless effects are dominant - in other words, the number of particles in the simulation is still not sufficient to reach the asymptotic behaviour of the system. I present a novel Monte Carlo method for simulating both collisional and collisionless evolution of non-spherical stellar systems, and apply it for the problem of binary supermassive black hole evolution. I show that in triaxial galaxies the final-parsec problem is largely non-existent, while in the axisymmetric case it seems to still exist in the limit of purely collisionless regime relevant for real galaxies, but disappears in the N-body simulations where the feasible values of N are still too low to get rid of collisional effects.
8 pages; proceedings of IAU symposium #312, "Star clusters and black holes in galaxies across cosmic time" (refs updated)
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Cited by in corpus (7)
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: IV. Implications for LISA
- Star Clusters in Evolving Galaxies
- Linking the fate of massive black hole binaries to the active galactic nuclei luminosity function
- The lifetime of binary black holes in Sérsic galaxy models
- Evolution of supermassive black hole binaries and tidal disruption rates in nonspherical galactic nuclei
- Probing the Delay Time of Supermassive Black Hole Binary Mergers With Gravitational Waves
- Formation of massive black holes in ultra-compact dwarf galaxies: migration of primordial intermediate-mass black holes in N-body simulation