Formation of galactic nuclei with multiple supermassive black holes at high redshifts
arXiv:1107.0517 · doi:10.1111/j.1365-2966.2012.20699.x
Abstract
We examine the formation of groups of multiple supermassive black holes (SMBHs) in gas-poor galactic nuclei due to the high merger rate of galaxies at high redshifts. We calculate the relative likelihood of binary, triple, and quadruple SMBH systems, by considering the timescales for relevant processes and combining merger trees with N-body simulations for the dynamics of stars and SMBHs in galactic nuclei. Typical haloes today with mass M have an average mass M at , while rare haloes with current mass M have an average mass M at that redshift. These cluster-size haloes are expected to host single galaxies at . We expect about 30% galaxies within haloes with present-day mass M to contain more than two SMBHs at redshifts . For larger present-day haloes, with M, this fraction is almost 60%. The existence of multiple SMBHs at high redshifts can potentially explain the mass deficiencies observed in the cores of massive elliptical galaxies, which are up to 5 times the mass of their central BHs. Multiple SMBHs would also lead to an enhanced rate of tidal disruption of stars, modified gravitational wave signals compared to isolated BH binaries, and slingshot ejection of SMBHs from galaxies at high speeds in excess of 2000 km s.
18 pages, 14 figures, 2 tables; submitted to MNRAS; comments welcome
References in corpus (30)
- A luminous quasar at a redshift of z = 7.085
- A unified model for AGN feedback in cosmological simulations of structure formation
- A relativistic jetted outburst from a massive black hole fed by a tidally disrupted star
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- The Birth of a Relativistic Outflow in the Unusual γ-ray Transient Swift J164449.3+573451
- Supermassive recoil velocities for binary black-hole mergers with antialigned spins
- An extremely luminous panchromatic outburst from the nucleus of a distant galaxy
- Alignment of the spins of supermassive black holes prior to coalescence
- Formation of z ~ 6 quasars from hierarchical galaxy mergers
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- The MORGANA model for the rise of galaxies and active nuclei
- Ejection of Supermassive Black Holes from Galaxy Cores
- Stellar remnants in galactic nuclei: mass segregation
- The black hole mass -- stellar velocity dispersion correlation: bulges versus pseudobulges
- Efficient Merger of Binary Supermassive Black Holes in Merging Galaxies
- Interaction of massive black hole binaries with their stellar environment: I. Ejection of hypervelocity stars
- Getting a kick out of numerical relativity
- Quasars at z=6: the survival of the fittest
- Dynamics of triple black hole systems in hierarchically merging massive galaxies
- A Theoretical Interpretation of the Black Hole Fundamental Plane
- Tidal stellar disruptions by massive black hole pairs: II. Decaying binaries
- Gravitational recoil: signatures on the massive black hole population
- Supermassive Black Holes in the Hierarchical Universe: A General Framework and Observational Tests
- Long-Term Evolution of Massive Black Hole Binaries. III. Binary Evolution in Collisional Nuclei
- Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries
- Simulating Subhalos at High Redshift: Merger Rates, Counts, and Types
- The Effect of Massive Perturbers on Extreme Mass-Ratio Inspiral Waveforms
- The Mass Assembly History of Spheroidal Galaxies: Did Newly-Formed Systems Arise Via Major Mergers?
- Tidal Disruption of Stellar Objects by Hard Supermassive Black Hole Binaries
- Cosmic Train Wreck by Massive Black Holes: Discovery of a kpc-Scale Triple Active Galactic Nucleus
Cited by in corpus (64)
- The Eccentric Kozai-Lidov Effect and Its Applications
- Resonant Post-Newtonian Eccentricity Excitation in Hierarchical Three-body Systems
- The Luminosity Function of Fermi-detected Flat-Spectrum Radio Quasars
- Massive binary black holes in galactic nuclei and their path to coalescence
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: IV. Implications for LISA
- A close-pair binary in a distant triple supermassive black-hole system
- A milliparsec supermassive black hole binary candidate in the galaxy SDSS J120136.02+300305.5
- Constraining sub-Parsec Binary Supermassive Black Holes in Quasars with Multi-Epoch Spectroscopy. I. The General Quasar Population
- The Dynamical Fingerprint of Core Scouring in Massive Elliptical Galaxies
- Interactions between multiple supermassive black holes in galactic nuclei: a solution to the final parsec problem
- A 40-billion solar mass black hole in the extreme core of Holm 15A, the central galaxy of Abell 85
- Constraining Sub-Parsec Binary Supermassive Black Holes in Quasars with Multi-Epoch Spectroscopy. II. The Population with Kinematically Offset Broad Balmer Emission Lines
- Depleted cores, multi-component fits, and structural parameter relations for luminous early-type galaxies
- Post-Newtonian evolution of massive black hole triplets in galactic nuclei -- III. A robust lower limit to the nHz stochastic background of gravitational waves
- Post-Newtonian evolution of massive black hole triplets in galactic nuclei -- II. Survey of the parameter space
- Constraining Sub-Parsec Binary Supermassive Black Holes in Quasars with Multi-Epoch Spectroscopy. III. Candidates from Continued Radial Velocity Tests
- Massive black hole evolution models confronting the n-Hz amplitude of the stochastic gravitational wave background
- Central Stellar Mass Deficits in the Bulges of Local Lenticular Galaxies, and the Connection with Compact z ~ 1.5 Galaxies
- The ATLAS3D Project -- XXIII. Angular momentum and nuclear surface brightness profiles
- X-ray emission from high-redshift miniquasars: self-regulating the population of massive black holes through global warming
- NGC6240: A triple nucleus system in the advanced or final state of merging
- A search for cyclical sources of gamma-ray emission on the period range from days to years in the Fermi-LAT sky
- Relativistic three-body effects in hierarchical triples
- Separating Accretion and Mergers in the Cosmic Growth of Black Holes with X-ray and Gravitational Wave Observations
- Sizing up Partially-Depleted Galaxy Cores
- A remarkably large depleted core in the Abell 2029 BCG IC 1101
- Formation of the largest galactic cores through binary scouring and gravitational wave recoil
- Massive black holes in central cluster galaxies
- Large 21 cm signals from AGN-dominated reionization
- Formation channels of slowly rotating early-type galaxies
- Massive Black Hole Binaries from the TNG50-3 Simulation: I. Coalescence and LISA Detection Rates
- Specific Frequencies and Luminosity Profiles of Cluster Galaxies and Intracluster Light in Abell 1689
- Evidence from the Very Long Baseline Array that J1502SE/SW are Double Hotspots, not a Supermassive Binary Black Hole
- Growth of Supermassive Black Hole Seeds in ETG Star-Forming Progenitors: Multiple Merging of Stellar Compact Remnants via Gaseous Dynamical Friction and Gravitational Wave Emission
- Constraints on Supermassive Black Hole Binaries from JWST and NANOGrav
- KETJU -- resolving small-scale supermassive black hole dynamics in GADGET-4
- The quest for the largest depleted galaxy core: supermassive black hole binaries and stalled in-falling satellites
- Dynamical evolution of massive black holes in galactic-scale N-body simulations - introducing the regularized tree code "rVINE"
- Spectral Energy Distributions of Candidate Periodically-Variable Quasars: Testing the Binary Black Hole Hypothesis
- -process nucleosynthesis in the early Universe through fast mergers of compact binaries in triple systems
- The nuclear activity and central structure of the elliptical galaxy NGC 5322
- RABBITS -- I. The crucial role of nuclear star formation in driving the coalescence of supermassive black hole binaries
- Binaries traveling through a gaseous medium: Dynamical drag forces and internal torques
- Radio Crickets: Chirping Jets from Black Hole Binaries Entering their Gravitational Wave Inspiral
- Too big to be real? No depleted core in Holm 15A
- Constraints on Two Active Galactic Nuclei in the Merger Remnant COSMOS J100043.15+020637.2
- Dynamics of supermassive black hole triples in the ROMULUS25 cosmological simulation
- Galaxy Core Formation by Supermassive Black Hole Binaries: the Importance of Realistic Initial Conditions and Galaxy Morphology
- A Globular Cluster Toward M87 with a Radial Velocity < -1000 km/s: The First Hypervelocity Cluster
- Structure of the nucleus of 1928+738
- Faint AGN in z>~6 Lyman-break Galaxies Powered by Cold Accretion and Rapid Angular Momentum Transport
- `Zwicky's Nonet': a compact merging ensemble of nine galaxies and 4C 35.06, a peculiar radio galaxy with dancing radio jets
- Constraining the host galaxy halos of massive black holes from LISA event rates
- Unveiling the solution to the final-parsec problem by combining milli-Hertz gravitational-wave observation and AGN survey
- Triple and Quadruple Black Holes in the ASTRID Simulation at
- Astrophysics with the Laser Interferometer Space Antenna
- The Fates of Merging Supermassive Black Holes and a Proposal for a New Class of X-Ray Sources
- Unravelling the formation of the first supermassive black holes with the SKA pulsar timing array
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- Effect of a partial coverage of quasar broad-line regions by intervening H-bearing clouds
- Elliptical (E) and ellicular (ES) galaxies in the M_bh-M_*,sph diagram, and a merger-driven explanation for the origin of ES galaxies, anti-truncated stellar discs in lenticular galaxies, and the Sersicification of E galaxy light profiles
- The hierarchical three-body problem at
- The most massive galaxies with large depleted cores: structural parameter relations and black hole masses
- The Gamma-ray Luminosity Function of Flat-Spectrum Radio Quasars