The importance of black hole repositioning for galaxy formation simulations
arXiv:2109.01489 · doi:10.1093/mnras/stac1339
Abstract
Active galactic nucleus (AGN) feedback from accreting supermassive black holes (SMBHs) is an essential ingredient of galaxy formation simulations. The orbital evolution of SMBHs is affected by dynamical friction that cannot be predicted self-consistently by contemporary simulations of galaxy formation in representative volumes. Instead, such simulations typically use a simple "repositioning" of SMBHs, but the effects of this approach on SMBH and galaxy properties have not yet been investigated systematically. Based on a suite of smoothed particle hydrodynamics simulations with the SWIFT code and a Bondi-Hoyle-Lyttleton subgrid gas accretion model, we investigate the impact of repositioning on SMBH growth and on other baryonic components through AGN feedback. Across at least a factor ~1000 in mass resolution, SMBH repositioning (or an equivalent approach) is a necessary prerequisite for AGN feedback; without it, black hole growth is negligible. Limiting the effective repositioning speed to 10 km/s delays the onset of AGN feedback and severely limits its impact on stellar mass growth in the centre of massive galaxies. Repositioning has three direct physical consequences. It promotes SMBH mergers and thus accelerates their initial growth. In addition, it raises the peak density of the ambient gas and reduces the SMBH velocity relative to it, giving a combined boost to the accretion rate that can reach many orders of magnitude. Our results suggest that a more sophisticated and/or better calibrated treatment of SMBH repositioning is a critical step towards more predictive galaxy formation simulations.
17 pages, 11 figures (including appendix); accepted by MNRAS. Minor updates to match accepted version
References in corpus (40)
- Array Programming with NumPy
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Heating Hot Atmospheres with Active Galactic Nuclei
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- A unified model for AGN feedback in cosmological simulations of structure formation
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- Supermassive recoil velocities for binary black-hole mergers with antialigned spins
- The dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- Evidence for Wide-Spread AGN Driven Outflows in the Most Massive z~1-2 Star Forming Galaxies
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological simulations
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- The erratic dynamical life of black hole seeds in high-redshift galaxies
- Black hole mergers from dwarf to massive galaxies with the NewHorizon and Horizon-AGN simulations
- Black Hole Mass Scaling Relations for Early-Type Galaxies: - and -
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
- A physically motivated definition for the size of galaxies in an era of ultra-deep imaging
- Hunting for Galaxies and Halos in simulations with VELOCIraptor
- Energy equipartition between stellar and dark matter particles in cosmological simulations results in spurious growth of galaxy sizes
- Simulating Groups and the IntraGroup Medium: The Surprisingly Complex and Rich Middle Ground Between Clusters and Galaxies
- Sphenix: Smoothed Particle Hydrodynamics for the next generation of galaxy formation simulations
- Which AGN Jets Quench Star Formation in Massive Galaxies?
- Origins and Demographics of Wandering Black Holes
- Seeds Don't Sink: Even Massive Black Hole "Seeds" Cannot Migrate to Galaxy Centers Efficiently
- The DIANOGA simulations of galaxy clusters: characterizing star formation in proto-clusters
- Quasar outflows at : the impact on the host galaxies
- The Origins of Off-Centre Massive Black Holes in Dwarf Galaxies
- A universal relation between the properties of supermassive black holes, galaxies, and dark matter halos
- Compaction-Driven Black Hole Growth
- Impact of AGN feedback on galaxies and their multiphase ISM across cosmic time
- Cosmological simulations of quasar fueling to sub-parsec scales using Lagrangian hyper-refinement
- Impact of gas based seeding on supermassive black hole populations at
- Inconsistencies arising from the coupling of galaxy formation sub-grid models to Pressure-Smoothed Particle Hydrodynamics
- A restless supermassive black hole in the galaxy J0437+2456
Cited by in corpus (29)
- The FLAMINGO project: cosmological hydrodynamical simulations for large-scale structure and galaxy cluster surveys
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- SWIFT: A modern highly-parallel gravity and smoothed particle hydrodynamics solver for astrophysical and cosmological applications
- Two can play at that game: constraining the role of supernova and AGN feedback in dwarf galaxies with cosmological zoom-in simulations
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- Interacting galaxies in the IllustrisTNG simulations -- IV: Enhanced Supermassive Black Hole Accretion Rates in Post-Merger Galaxies
- The FLAMINGO project: Baryon effects on the matter power spectrum
- Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers
- Introducing the AIDA-TNG project: galaxy formation in alternative dark matter models
- EAGLE-like simulation models do not solve the entropy core problem in groups and clusters of galaxies
- Dynamical friction and evolution of black holes in cosmological simulations: a new implementation in OpenGadget3
- How to Interpret Measurements of Diffuse Light in Stacked Observations of Groups and Clusters of Galaxies
- Rhapsody-C simulations -- Anisotropic thermal conduction, black hole physics, and the robustness of massive galaxy cluster scaling relations
- Off-centre supermassive black holes in bright central galaxies
- Dynamical friction of a massive black hole in a turbulent gaseous medium
- Gamma rays from dark matter spikes in EAGLE simulations
- COLIBRE: calibrating subgrid feedback in cosmological simulations that include a cold gas phase
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- Premature supermassive black hole mergers in cosmological simulations of structure formation
- DARKSKIES: A suite of super-sampled zoom-in simulations of galaxy clusters with self-interacting dark matter
- Kennicutt-Schmidt relation of galaxies over 13 billion years in the COLIBRE hydrodynamical simulations
- The FLAMINGO simulations data release
- First Light And Reionization Epoch Simulations (FLARES) -- XIX: Supermassive black hole mergers in the early Universe and their environmental dependence
- How supermassive black holes shape central entropies in galaxy clusters
- Entropy plateaus can emerge from gas replacement at a characteristic halo mass in simulated groups and clusters of galaxies
- Rapid sinking and efficient mergers of supermassive black holes in compact high-redshift galaxies
- Ray-traced weak lensing convergence in screened modified gravity theories
- Galaxies in the central regions of simulated galaxy clusters
- The interplay between AGN feedback and precipitation of the intracluster medium in simulations of galaxy groups and clusters