Growing Massive Black Holes in a Local Group Environment: the Central Supermassive, Slowly Sinking, and Ejected Populations
arXiv:1102.0327 · doi:10.1111/j.1365-2966.2011.18444.x
Abstract
We explore the growth of < 10^7 Msun black holes that reside at the centers of spiral and field dwarf galaxies in a Local Group type of environment. We use merger trees from a cosmological N-body simulation known as Via Lactea II (VL-2) as a framework to test two merger-driven semi-analytic recipes for black hole growth that include dynamical friction, tidal stripping, and gravitational wave recoil in over 20,000 merger tree realizations. First, we apply a Fundamental Plane limited (FPL) model to the growth of Sgr A*, which drives the central black hole to a maximum mass limited by the Black Hole Fundamental Plane after every merger. Next, we present a new model that allows for low-level Prolonged Gas Accretion (PGA) during the merger. We find that both models can generate a Sgr A* mass black hole. We predict a population of massive black holes in local field dwarf galaxies - if the VL-2 simulation is representative of the growth of the Local Group, we predict up to 35 massive black holes (< 10^6 Msun) in Local Group field dwarfs. We also predict that hundreds of < 10^5 Msun black holes fail to merge, and instead populate the Milky Way halo, with the most massive of them at roughly the virial radius. In addition, we find that there may be hundreds of massive black holes ejected from their hosts into the nearby intergalactic medium due to gravitational wave recoil. We discuss how the black hole population in the Local Group field dwarfs may help to constrain the growth mechanism for Sgr A*.
25 pages, 19 figures, accepted for publication in MNRAS
References in corpus (27)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- A unified model for AGN feedback in cosmological simulations of structure formation
- Direct cosmological simulations of the growth of black holes and galaxies
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- The effect of galaxy mass ratio on merger--driven starbursts
- Rapid Formation of Supermassive Black Hole Binaries in Galaxy Mergers with Gas
- Alignment of the spins of supermassive black holes prior to coalescence
- Supermassive black hole binaries in gaseous and stellar circumnuclear discs: orbital dynamics and gas accretion
- An Observed Fundamental Plane Relation for Supermassive Black Holes
- Quasars Are Not Light-Bulbs: Testing Models of Quasar Lifetimes with the Observed Eddington Ratio Distribution
- The Distribution of Recoil Velocities from Merging Black Holes
- Modeling kicks from the merger of non-precessing black-hole binaries
- Gravitational Wave Recoil and the Retention of Intermediate Mass Black Holes
- Wandering Black Holes in Bright Disk Galaxy Halos
- Gravitational recoil: signatures on the massive black hole population
- Satellites of Simulated Galaxies: survival, merging, and their relation to the dark and stellar halos
- Metal-Free Gas Supply at the Edge of Reionization: Late-Epoch Population III Star Formation
- Relativistic Suppression of Black Hole Recoils
- Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries
- Dealing with delicate issues in waveforms calculations
- Retaining Black Holes with Very Large Recoil Velocities
- Supermassive Black Hole Growth and Merger Rates from Cosmological N-body Simulations
- Extreme recoils: impact on the detection of gravitational waves from massive black hole binaries
- Gravitational Wave Signal from Assembling the Lightest Supermassive Black Holes
- Mesolensing Explorations of Nearby Masses: From Planets to Black Holes
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- What Drives the Growth of Black Holes?
- Intermediate mass black holes in AGN disks: I. Production & Growth
- X-ray Variability and Hardness of ESO 243-49 HLX-1: Clear Evidence for Spectral State Transitions
- Recoiling black holes: electromagnetic signatures, candidates, and astrophysical implications
- Torque-Limited Growth of Massive Black Holes in Galaxies Across Cosmic Time
- Origins and Demographics of Wandering Black Holes
- A First Look at Galaxy Flyby Interactions: I. Characterizing the Frequency of Flybys in a Cosmological Context
- The properties of ten O-type stars in the low-metallicity galaxies IC 1613, WLM and NGC 3109
- A Population of Relic Intermediate-Mass Black Holes in the Halo of the Milky Way
- Effects of Inclination on Measuring Velocity Dispersion and Implications for Black Holes
- The Lives of High Redshift Mergers
- Massive Black Hole Science with eLISA
- Extremely efficient mergers of intermediate mass black hole binaries in nucleated dwarf galaxies
- Hunting for dark halo substructure using submilliarcsecond-scale observations of macrolensed radio jets
- The imprint of the cosmic supermassive black hole growth history on the 21 cm background radiation
- Subhalo sinking and off-center massive black holes in dwarf galaxies
- The role of gravitational recoil in the assembly of massive black hole seeds
- Off-centre supermassive black holes in bright central galaxies
- SMBH growth parameters in the early Universe of Millennium and Millennium-II simulations
- Can a Satellite Galaxy Merger Explain the Active Past of the Galactic Center?
- Wandering and escaping: recoiling massive black holes in cosmological simulations
- Direct Gravitational Imaging of Intermediate Mass Black Holes in Extragalactic Halos
- Discovery of faint double-peak Halpha emission in the halo of low redshift galaxies
- Kickstarting Reionization with the First Black Holes: the effects of second-order perturbation theory in pre-reionization volumes
- Recoiling supermassive black holes in analytical and numerical galaxy potential