Accretion onto supermassive and intermediate mass black holes in cosmological simulations
arXiv:2502.13241 · doi:10.1051/0004-6361/202554174
Abstract
Accretion is the dominant contribution to the cosmic massive black hole density in the Universe today. Yet, modelling it in cosmological simulations is challenging due to the dynamic range involved, as well as the theoretical uncertainties of the underlying mechanisms driving accretion from galactic to black hole horizon scales. We present a simple, flexible parametrization for gas inflows onto massive black holes in order to manage this uncertainty in large-volume cosmological simulations. This is done as part of the "Learning the Universe'' collaboration, which aims to jointly infer the initial conditions and physical processes governing the evolution of the Universe using a Bayesian forward-modelling approach. To allow such a forward-modelling, we update the prescription for accretion with a two-parameter free-fall based inflow estimate that allows for a radius-dependent inflow rate and add a simple model for unresolved accretion disks. We use uniform resolution cosmological hydrodynamical simulations and the IllustrisTNG framework to study the massive black hole population and its dependence on the introduced model parameters. Once the parameters of the accretion formula are chosen to result in a roughly similar redshift zero black hole mass density, the differences caused by the details in the accretion formula are moderate in the supermassive black hole regime, indicating that it is difficult to distinguish between accretion mechanisms based on luminous active galactic nuclei powered by supermassive black holes. Applying the same models to intermediate mass black holes at high redshift, however, reveals significantly different accretion rates in high redshift, moderate luminosity active galactic nuclei and different frequencies and mass distributions of intermediate mass black hole mergers for the same black hole formation model.
20 pages, 13 figures, comments welcome. This is a Learning the Universe publication
References in corpus (40)
- First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- 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
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- Direct cosmological simulations of the growth of black holes and galaxies
- Simulating cosmic structure formation with the GADGET-4 code
- JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty
- Obscuration-dependent evolution of Active Galactic Nuclei
- Observational evidence for intermediate-mass black holes
- How Mergers May Affect The Mass Scaling Relations Between Black Holes, Galaxies, and Other Gravitationally Bound Systems
- The origins of massive black holes
- JWST CEERS & JADES Active Galaxies at z = 4-7 Violate the Local Relation at : Implications for Low-Mass Black Holes and Seeding Models
- Raining on black holes and massive galaxies: the top-down multiphase condensation model
- A definitive merger-AGN connection at z~0 with CFIS: mergers have an excess of AGN and AGN hosts are more frequently disturbed
- The imprint of massive black hole formation models on the LISA data stream
- The interplay between a galactic bar and a supermassive black hole: nuclear fueling in a sub-parsec resolution galaxy simulation
- X-ray constraints on the local supermassive black hole occupation fraction
- The cosmic growth of the active black hole population at 1<z<2 in zCOSMOS, VVDS and SDSS
- Fast-moving stars around an intermediate-mass black hole in Omega Centauri
- Supermassive black holes in cosmological simulations II: the AGN population and predictions for upcoming X-ray missions
- Black-hole-regulated star formation in massive galaxies
- Co-evolution of massive black holes and their host galaxies at high redshift: discrepancies from six cosmological simulations and the key role of JWST
- The Limitations of Optical Spectroscopic Diagnostics in Identifying AGNs in the Low Mass Regime
- Mock catalogs for the extragalactic X-ray sky: simulating AGN surveys with Athena and with the AXIS probe
- Appreciating mergers for understanding the non-linear - and - relations, updated herein, and the implications for the (reduced) role of AGN feedback
- Sustained super-Eddington accretion in high-redshift quasars
- Correlations between supermassive black holes and hot gas atmospheres in IllustrisTNG and X-ray observations
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- Magnetized Accretion onto and Feedback from Supermassive Black Holes in Elliptical Galaxies
- A significant excess in major merger rate for AGNs with the highest Eddington ratios at z<0.2
- Exploring the AGN Fraction of a Sample of JWST's Little Red Dots at : Overmassive Black Holes Are Strongly Favored
- Self-regulated AGN feedback of light jets in cool-core galaxy clusters
- The impact of AGN-driven winds on physical and observable galaxy sizes
- Modeling multi-phase gases in cosmological simulations using compressible multi-fluid hydrodynamics
- Simulations of black hole fueling in isolated and merging galaxies with an explicit, multiphase ISM
- An Enhanced Massive Black Hole Occupation Fraction Predicted in Cluster Dwarf Galaxies
- Hungry or Not: How Stellar-Mass Black Holes Grow (or Don't) in Dark Matter Mini-Haloes at High-Resolution