On the Dynamics of Supermassive Black Holes in Gas-Rich, Star-Forming Galaxies: the Case for Nuclear Star Cluster Coevolution
arXiv:1701.05190 · doi:10.1093/mnras/stx845
Abstract
We introduce a new model for the formation and evolution of supermassive black holes (SMBHs) in the RAMSES code using sink particles, improving over previous work the treatment of gas accretion and dynamical evolution. This new model is tested against a suite of high-resolution simulations of an isolated, gas-rich, cooling halo. We study the effect of various feedback models on the SMBH growth and its dynamics within the galaxy. In runs without any feedback, the SMBH is trapped within a massive bulge and is therefore able to grow quickly, but only if the seed mass is chosen larger than the minimum Jeans mass resolved by the simulation. We demonstrate that, in the absence of supernovae (SN) feedback, the maximum SMBH mass is reached when Active Galactic Nucleus (AGN) heating balances gas cooling in the nuclear region. When our efficient SN feedback is included, it completely prevents bulge formation, so that massive gas clumps can perturb the SMBH orbit, and reduce the accretion rate significantly. To overcome this issue, we propose an observationally motivated model for the joint evolution of the SMBH and a parent nuclear star cluster (NSC), which allows the SMBH to remain in the nuclear region, grow fast and resist external perturbations. In this scenario, however, SN feedback controls the gas supply and the maximum SMBH mass now depends on the balance between AGN heating and gravity. We conclude that SMBH/NSC co-evolution is crucial for the growth of SMBH in high-z galaxies, the progenitors of massive elliptical today.
accepted for publication in MNRAS
References in corpus (29)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- A unified model for AGN feedback in cosmological simulations of structure formation
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- The Illustris simulation: the evolving population of black holes across cosmic time
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- Slow Star Formation in Dense Gas: Evidence and Implications
- Massloss of galaxies due to a UV-background
- The Horizon-AGN simulation: morphological diversity of galaxies promoted by AGN feedback
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- Formation of the first nuclear clusters and massive black holes at high redshift
- The dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- Fueling Low-Level AGN Activity Through the Stochastic Accretion of Cold Gas
- AEGIS: The color-magnitude relation for X-ray selected AGN
- The Coincidence of Nuclear Star Clusters and Active Galactic Nuclei
- Suppressing star formation in quiescent galaxies with supermassive black hole winds
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- The impact of mechanical AGN feedback on the formation of massive early-type galaxies
- Towards a more realistic sink particle algorithm for the RAMSES code
- Formation of Massive Black Holes in Galactic Nuclei: Runaway Tidal Encounters
- Wandering Black Holes in Bright Disk Galaxy Halos
- From Starburst to Quiescence: Testing AGN feedback in Rapidly Quenching Post-Starburst Galaxies
- Giant Molecular Clouds in M31: I - Molecular Cloud Properties
- The Host Galaxy and Central Engine of the Dwarf AGN POX 52
- Orbital Decay of Supermassive Black Hole Binaries in Clumpy Multiphase Merger Remnants
- Black hole feeding and feedback: the physics inside the "subgrid"
- The Pairing of Accreting Massive Black Holes in Multiphase Circumnuclear Disks: the Interplay between Radiative Cooling, Star Formation, and Feedback Processes
- Nuclear Black Hole Formation in Clumpy Galaxies at High Redshift
Cited by in corpus (26)
- The Quest for Dual and Binary Supermassive Black Holes: A Multi-Messenger View
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- The ASTRID simulation: the evolution of Supermassive Black Holes
- The erratic dynamical life of black hole seeds in high-redshift galaxies
- Simulations of extragalactic magnetic fields and of their observables
- Quenching star formation with quasar outflows launched by trapped IR radiation
- Powering galactic super-winds with small-scale AGN winds
- Origins and Demographics of Wandering Black Holes
- Dynamical Friction Modeling of Massive Black Holes in Cosmological Simulations and Effects on Merger Rate Predictions
- High-redshift quasars and their host galaxies I: kinematical and dynamical properties and their tracers
- Galactic nuclei evolution with spinning black holes: method and implementation
- Seeds Don't Sink: Even Massive Black Hole "Seeds" Cannot Migrate to Galaxy Centers Efficiently
- The importance of black hole repositioning for galaxy formation simulations
- On the origin of surprisingly cold gas discs in galaxies at high redshift
- The combined effect of AGN and supernovae feedback in launching massive molecular outflows in high-redshift galaxies
- Early growth of typical high redshift black holes seeded by direct collapse
- Unveiling the Population of Wandering Black Holes via Electromagnetic Signatures
- Bondi or not Bondi: the impact of resolution on accretion and drag force modelling for Supermassive Black Holes
- Massive Black Hole Mergers with Orbital Information: Predictions from the ASTRID Simulation
- Zooming in on supermassive black holes: how resolving their gas cloud host renders their accretion episodic
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- Collective properties of quasar narrow associated absorption lines
- Rhapsody-C simulations -- Anisotropic thermal conduction, black hole physics, and the robustness of massive galaxy cluster scaling relations
- Cosmological Simulation of Galaxy Groups and Clusters-I: Global Effect of Feedback from Active Galactic Nuclei
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- Off-center black hole seed formation? Implications for high and low redshift massive black holes