Black hole feeding and feedback: the physics inside the "subgrid"
arXiv:1610.04753 · doi:10.1093/mnras/stx362
Abstract
Black holes (BHs) are believed to be a key ingredient of galaxy formation. However, the galaxy-BH interplay is challenging to study due to the large dynamical range and complex physics involved. As a consequence, hydrodynamical cosmological simulations normally adopt sub-grid models to track the unresolved physical processes, in particular BH accretion; usually the spatial scale where the BH dominates the hydrodynamical processes (the Bondi radius) is unresolved, and an approximate Bondi-Hoyle accretion rate is used to estimate the growth of the BH. By comparing hydrodynamical simulations at different resolutions (300, 30, 3 pc) using a Bondi-Hoyle approximation to sub-parsec runs with non-parameterized accretion, our aim is to probe how well an approximated Bondi accretion is able to capture the BH accretion physics and the subsequent feedback on the galaxy. We analyse an isolated galaxy simulation that includes cooling, star formation, Type Ia and Type II supernovae, BH accretion and AGN feedback (radiation pressure, Compton heating/cooling) where mass, momentum, and energy are deposited in the interstellar medium through conical winds. We find that on average the approximated Bondi formalism can lead to both over- and under-estimations of the BH growth, depending on resolution and on how the variables entering into the Bondi-Hoyle formalism are calculated.
Accepted for publication on MNRAS
References in corpus (16)
- 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
- Properties of galaxies reproduced by a hydrodynamic simulation
- A unified model for AGN feedback in cosmological simulations of structure formation
- The Illustris simulation: the evolving population of black holes across cosmic time
- Direct cosmological simulations of the growth of black holes and galaxies
- Raining on black holes and massive galaxies: the top-down multiphase condensation model
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological 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
- Chaotic cold accretion on to black holes in rotating atmospheres
- Wandering Black Holes in Bright Disk Galaxy Halos
- The origin of most massive black holes at high-z: BLUETIDES and the next quasar frontier
- The Effect of the AGN Feedback on the Interstellar Medium of Early-Type Galaxies: 2D Hydrodynamical Simulations of the Low-Rotation Case
- The effects of galaxy shape and rotation on the X-ray haloes of early-type galaxies - II. Numerical simulations
- Two-component galaxies with flat rotation curve
Cited by in corpus (15)
- Repeated mergers and ejection of black holes within nuclear star clusters
- The Pairing of Accreting Massive Black Holes in Multiphase Circumnuclear Disks: the Interplay between Radiative Cooling, Star Formation, and Feedback Processes
- Physical constraints on the extended interstellar medium of the z=6.42 quasar J1148+5251: [CII] 158um, [NII] 205um and [OI] 146um observations
- Exploring AGN and Star Formation Activity of Massive Galaxies at Cosmic Noon
- Impact of AGN feedback on galaxies and their multiphase ISM across cosmic time
- Bondi-Hoyle-Lyttleton accretion in the presence of small rigid bodies around a black hole
- Inception of a first quasar at cosmic dawn
- Mass accretion toward black holes in the final phase of galaxy mergers
- Active Galactic Nucleus Feedback in an Elliptical Galaxy with the Most Updated AGN Physics: Parameter Explorations
- What is the real accretion rate onto a black hole for low angular momentum accretion?
- Limits on the growth rate of supermassive black holes at early cosmic epochs
- Hydrodynamical Simulations of the Triggering of Nuclear Activities by Minor Mergers of Galaxies
- Improving Black Hole Accretion Treatment in Hydrodynamical Simulations
- Black Hole Feeding and Feedback in a Compact Galaxy
- The Effect of Accretion Environment at Large Radius on Hot Accretion Flows