Direct formation of supermassive black holes in metal-enriched gas at the heart of high-redshift galaxy mergers
arXiv:1411.5683 · doi:10.1088/0004-637X/810/1/51
Abstract
We present novel 3D multi-scale SPH simulations of gas-rich galaxy mergers between the most massive galaxies at , designed to scrutinize the direct collapse formation scenario for massive black hole seeds proposed in \citet{mayer+10}. The simulations achieve a resolution of 0.1 pc, and include both metallicity-dependent optically-thin cooling and a model for thermal balance at high optical depth. We consider different formulations of the SPH hydrodynamical equations, including thermal and metal diffusion. When the two merging galaxy cores collide, gas infall produces a compact, optically thick nuclear disk with densities exceeding g cm. The disk rapidly accretes higher angular momentum gas from its surroundings reaching pc and a mass of in only a few yr. Outside pc it fragments into massive clumps. Instead, supersonic turbulence prevents fragmentation in the inner parsec region, which remains warm ( K) and develops strong non-axisymmetric modes that cause prominent radial gas inflows ( yr), forming an ultra-dense massive disky core. Angular momentum transport by non-axisymmetric modes should continue below our spatial resolution limit, quickly turning the disky core into a supermassive protostar which can collapse directly into a massive black hole of mass via the relativistic radial instability. Such a "cold direct collapse"' explains naturally the early emergence of high-z QSOs. Its telltale signature would be a burst of gravitational waves in the frequency range Hz, possibly detectable by the planned eLISA interferometer.
14 pages, 10 figures, submitted to ApJ, comments are welcome
References in corpus (24)
- A luminous quasar at a redshift of z = 7.085
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Supermassive black hole formation during the assembly of pre-galactic discs
- Rapid Formation of Supermassive Black Hole Binaries in Galaxy Mergers with Gas
- Formation of the first nuclear clusters and massive black holes at high redshift
- Accretion onto the First Stellar Mass Black Holes
- The Two Modes of Gas Giant Planet Formation
- On the Density Distribution in Star-forming Interstellar Clouds
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- The evolution of runaway stellar collision products
- Resolving the Formation of Protogalaxies. II. Central Gravitational Collapse
- A Superbubble Feedback Model for Galaxy Simulations
- Quasars at z=6: the survival of the fittest
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- The aftermath of the first stars: massive black holes
- Quasistars: Accreting black holes inside massive envelopes
- Feedback-regulated Super Massive Black Hole Seed Formation
- Constraining the high redshift formation of black hole seeds in nuclear star clusters with gas inflows
- The formation of compact massive self-gravitating discs in metal-free haloes with virial temperatures of ~ 13000-30000 K
- Orbital Decay of Supermassive Black Hole Binaries in Clumpy Multiphase Merger Remnants
- The Argo Simulation: II. The Early Build-up of the Hubble Sequence
- Star Formation and Clumps in Cosmological Galaxy Simulations with Radiation Pressure Feedback
- Collapse of differentially rotating supermassive stars: Post black hole formation
Cited by in corpus (76)
- Black holes, gravitational waves and fundamental physics: a roadmap
- The Assembly of the First Massive Black Holes
- Observational evidence for intermediate-mass black holes
- The origins of massive black holes
- Intermediate-mass black holes in dwarf galaxies out to redshift 2.4 in the Chandra COSMOS Legacy Survey
- When Feedback Fails: The Scaling and Saturation of Star Formation Efficiency
- Formation of supermassive black hole seeds
- Growing massive black holes through super-critical accretion of stellar-mass seeds
- Super-Eddington Accretion and Feedback from the First Massive Seed Black Holes
- X-ray Detected Active Galactic Nuclei in Dwarf Galaxies at
- The low-end of the black hole mass function at cosmic dawn
- Extreme N-emitters at high-redshift: signatures of supermassive stars and globular cluster or black hole formation in action?
- The route to massive black hole formation via merger-driven direct collapse: a review
- Formation of the first stars and black holes
- Light, medium-weight or heavy? The nature of the first supermassive black hole seeds
- Gravitational Wave Astronomy With TianQin
- The Early Growth of the First Black Holes
- Is there a maximum mass for black holes in galactic nuclei?
- Resolving flows around black holes: numerical technique and applications
- Multiple channels for nitrogen pollution by metal enriched supermassive stars and implications for GN-z11
- The Formation of Supermassive Black Holes from Population III.1 Seeds. I. Cosmic Formation Histories and Clustering Properties
- Black Hole Starvation and Bulge Evolution in a Milky Way-like Galaxy
- Multi-flavour SMBH seeding and evolution in cosmological environments
- Formation of supermassive black hole seeds in nuclear star clusters via gas accretion and runaway collisions
- Unveiling early black hole growth with multi-frequency gravitational wave observations
- A detailed framework to incorporate dust in hydrodynamical simulations
- Gravitational wave of intermediate-mass black holes in Population III star clusters
- Magnetorotational Collapse of Supermassive Stars: Black Hole Formation, Gravitational Waves and Jets
- Forming Super-Massive Black Hole Seeds under the Influence of a Nearby Anisotropic Multi-Frequency Source
- The first supermassive black holes
- Bulge-driven Fueling of Seed Black Holes
- Massive black hole and Population III galaxy formation in over-massive dark matter halos with violent merger histories
- Maximally accreting supermassive stars: a fundamental limit imposed by hydrostatic equilibrium
- Growing Black Holes through Successive Mergers in Galactic Nuclei: I. Methods and First Results
- Rapidly accreting supermassive stars: reliable determination of the final mass
- Local simulations of MRI turbulence with meshless methods
- Direct collapse of exceptionally heavy black holes in the merger-driven scenario
- On the Detection of Supermassive Primordial Stars. II. Blue Supergiants
- 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
- General-relativistic instability in rapidly accreting supermassive stars: the impact of rotation
- Bright vigorous winds as signposts of supermassive black hole birth
- Effect of mass loss due to stellar winds on the formation of supermassive black hole seeds in dense nuclear star clusters
- The Assembly of Black Hole Mass and Luminosity Functions of High-redshift Quasars via Multiple Accretion Episodes
- Black hole formation in the context of dissipative dark matter
- Enhanced star formation in quasar companions
- High-redshift Galaxy Formation with Self-consistently Modeled Stars and Massive Black Holes: Stellar Feedback and Quasar Growth
- Merging Hierarchical Triple Black Hole Systems with Intermediate-mass Black Holes in Population III Star Clusters
- Cosmological simulations of quasar fueling to sub-parsec scales using Lagrangian hyper-refinement
- On the maximum accretion rate of supermassive stars
- Positive or Negative? The Impact of X-ray Feedback on the Formation of Direct Collapse Black Hole Seeds
- Inception of a first quasar at cosmic dawn
- General-relativistic instability in hylotropic supermassive stars
- The Black Hole Mass Function Across Cosmic Times II. Heavy Seeds and (Super)Massive Black Holes
- Maximally Rotating Supermassive Stars at the Onset of Collapse: The Perturbative Effects of Gas Pressure, Magnetic Fields, Dark Matter and Dark Energy
- Rapid formation of a very massive star >50000 and subsequently an IMBH from runaway collisions. Direct N-body and Monte Carlo simulations of dense star clusters
- Evolution and explosions of metal enriched supermassive stars: proton rich general relativistic instability supernovae
- Cosmological 21cm line observations to test scenarios of super-Eddington accretion on to black holes being seeds of high-redshifted supermassive black holes
- Role of magnetic fields in the formation of direct collapse black holes
- Light or heavy supermassive black hole seeds: the role of internal rotation in the fate of supermassive stars
- Triggering the formation of direct collapse black holes by their congeners
- An analytic resolution to the competition between Lyman-Werner radiation and metal winds in direct collapse black hole hosts
- Growth of massive black holes at high-z via accretion predominantly driven by magnetic outflows
- The chemical evolution of self-gravitating primordial disks
- Massive black holes in high-redshift Lyman Break Galaxies
- Astrophysics with the Laser Interferometer Space Antenna
- Black hole-galaxy co-evolution and the role of feedback
- Maximally Rotating Supermassive Stars at the Onset of Collapse: Effects of Gas Pressure
- Massive Black Hole Mergers
- The properties of supermassive stars in galaxy merger driven direct collapse I: models without rotation
- General-relativistic instability in rapidly accreting supermassive stars in the presence of dark matter
- The imprint of gas on gravitational waves from LISA intermediate-mass black hole binaries
- Identification of Candidate Halos Hosting Massive Black Hole Seeds in the Simulations with Support Vector Machines
- Multi-component, axisymmetric dynamical models of dSphs based on distribution functions: inferences on dark matter and intermediate-mass black holes in Draco and Ursa Minor
- Massive star clusters detected by JWST as natural birth places to form intermediate-mass black holes
- The Contribution of AGN Accretion Disks to Hydrogen Reionization
- Strong correlation between FeII/MgII ratio and Eddington ratio of type 1 Active galactic nuclei