Resolving flows around black holes: numerical technique and applications
arXiv:1502.03445 · doi:10.1093/mnras/stv2246
Abstract
Black holes are believed to be one of the key ingredients of galaxy formation models, but it has been notoriously challenging to simulate them due to the very complex physics and large dynamical range of spatial scales involved. Here we address a significant shortcoming of a Bondi-Hoyle-like prescription commonly invoked to estimate black hole accretion in cosmological hydrodynamic simulations of galaxy formation, namely that the Bondi-Hoyle radius is frequently unresolved. We describe and implement a novel super-Lagrangian refinement scheme to increase, adaptively and 'on the fly', the mass and spatial resolution in targeted regions around the accreting black holes at limited computational cost. While our refinement scheme is generically applicable and flexible, for the purpose of this paper we select the smallest resolvable scales to match black holes' instantaneous Bondi radii, thus effectively resolving Bondi-Hoyle-like accretion in full galaxy formation simulations. This permits us to not only estimate gas properties close to the Bondi radius much more accurately, but also allows us to improve black hole accretion and feedback implementations. We thus devise a more generic feedback model where accretion and feedback depend on the geometry of the local gas distribution and where mass, energy and momentum loading are followed simultaneously. We present a series of tests of our refinement and feedback methods and apply them to models of isolated disc galaxies. Our simulations demonstrate that resolving gas properties in the vicinity of black holes is necessary to follow black hole accretion and feedback with a higher level of realism and that doing so allows us to incorporate important physical processes so far neglected in cosmological simulations.
21 pages, 15 figures, MNRAS accepted, figures and videos are available at http://www.ast.cam.ac.uk/~mc636/
References in corpus (8)
- A unified model for AGN feedback in cosmological simulations of structure formation
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- Wind from the black-hole accretion disk driving a molecular outflow in an active galaxy
- Evidence for Wide-Spread AGN Driven Outflows in the Most Massive z~1-2 Star Forming Galaxies
- Feedback from Active Galactic Nuclei: Energy- versus momentum-driving
- Fuelling Active Galactic Nuclei
- The impact of mechanical AGN feedback on the formation of massive early-type galaxies
Cited by in corpus (37)
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- Quenching star formation with quasar outflows launched by trapped IR radiation
- AGN jet feedback on a moving mesh: cocoon inflation, gas flows and turbulence
- Powering galactic super-winds with small-scale AGN winds
- Post-Newtonian dynamical modeling of supermassive black holes in galactic-scale simulations
- Two can play at that game: constraining the role of supernova and AGN feedback in dwarf galaxies with cosmological zoom-in simulations
- Black hole feeding and feedback: the physics inside the "subgrid"
- Fast and energetic AGN-driven outflows in simulated dwarf galaxies
- Blandford-Znajek jets in galaxy formation simulations: method and implementation
- Resolving shocks and filaments in galaxy formation simulations: effects on gas properties and star formation in the circumgalactic medium
- The Early Growth of the First Black Holes
- Resolving massive black hole binaries evolution via adaptive particle-splitting
- AGN-driven outflows and the formation of Ly nebulae around high-z quasars
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- Blandford-Znajek jets in galaxy formation simulations: exploring the diversity of outflows produced by spin-driven AGN jets in Seyfert galaxies
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- Stellar and AGN feedback in isolated early-type galaxies: the role in regulating star formation and ISM properties
- AGN jet feedback on a moving mesh: lobe energetics and X-ray properties in a realistic cluster environment
- Impact of AGN feedback on galaxies and their multiphase ISM across cosmic time
- Powerful quasar outflow in a massive disc galaxy at
- How AGN feedback drives the size growth of the first quasars
- Bondi accretion in early-type galaxies
- Resolving flows around black holes: the impact of gas angular momentum
- A unified accretion disc model for supermassive black holes in galaxy formation simulations: method and implementation
- Zooming in on supermassive black holes: how resolving their gas cloud host renders their accretion episodic
- Bondi-Hoyle-Lyttleton accretion in the presence of small rigid bodies around a black hole
- EDGE: The emergence of dwarf galaxy scaling relations from cosmological radiation-hydrodynamics simulations
- Cosmological simulations of quasar fueling to sub-parsec scales using Lagrangian hyper-refinement
- Simulations of black hole fueling in isolated and merging galaxies with an explicit, multiphase ISM
- Dynamics and spin alignment in massive, gravito-turbulent circumbinary discs around supermassive black hole binaries
- RABBITS -- II. The impact of AGN feedback on coalescing supermassive black holes in disc and elliptical galaxy mergers
- Accretion onto supermassive and intermediate mass black holes in cosmological simulations
- On the polytropic Bondi accretion in two-component galaxy models with a central massive BH
- Hungry or Not: How Stellar-Mass Black Holes Grow (or Don't) in Dark Matter Mini-Haloes at High-Resolution
- The Dawn of Black Holes
- Dynamical friction and massive black hole orbits: analytical predictions and numerical solutions