Quasar Clustering in Cosmological Hydrodynamic Simulations: Evidence for mergers
arXiv:1005.1653 · doi:10.1111/j.1365-2966.2011.18221.x
Abstract
We examine the clustering properties of a population of quasars drawn from fully hydrodynamic cosmological simulations that directly follow black hole growth. We find that the black hole correlation function is best described by two distinct components: contributions from BH pairs occupying the same dark matter halo ('1-halo term') which dominate at scales below 300 kpc/h, and contributions from BHs occupying separate halos ('2-halo term') which dominate at larger scales. From the 2-halo BH term we find a typical host halo mass for faint-end quasars (those probed in our simulation volumes) ranging from 10^11 to a few 10^12 solar masses from z=5 to z=1 respectively (consistent with the mean halo host mass). The BH correlation function shows a luminosity dependence as a function of redshift, though weak enough to be consistent with observational constraints. At small scales, the high resolution of our simulations allows us to probe the 1-halo clustering in detail, finding that the 1-halo term follows an approximate power law, lacking the characteristic decrease in slope at small scales found in 1-halo terms for galaxies and dark matter. We show that this difference is a direct result of a boost in the small-scale quasar bias caused by galaxies hosting multiple quasars (1-subhalo term) following a merger event, typically between a large central subgroup and a smaller, satellite subgroup hosting a relatively small black hole. We show that our predicted small-scale excess caused by such mergers is in good agreement with both the slope and amplitude indicated by recent small-scale measurements. Finally, we note the excess to be a strong function of halo mass, such that the observed excess is well matched by the multiple black holes of intermediate mass (10^7-10^8 solar masses) found in hosts of 4-8*10^11 solar masses, a range well probed by our simulations.
12 pages, 10 figures. Submitted to MNRAS
References in corpus (22)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- A unified model for AGN feedback in cosmological simulations of structure formation
- Cosmological simulations of the growth of supermassive black holes and feedback from active galactic nuclei: method and tests
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Direct cosmological simulations of the growth of black holes and galaxies
- Clustering of High Redshift () Quasars from the Sloan Digital Sky Survey
- Rapid Formation of Supermassive Black Hole Binaries in Galaxy Mergers with Gas
- Fueling Low-Level AGN Activity Through the Stochastic Accretion of Cold Gas
- Clustering of Low-Redshift (z <= 2.2) Quasars from the Sloan Digital Sky Survey
- The 2dF-SDSS LRG and QSO Survey: QSO clustering and the L-z degeneracy
- Quasars at z=6: the survival of the fittest
- An Observed Fundamental Plane Relation for Supermassive Black Holes
- Clustering Analyses of 300,000 Photometrically Classified Quasars--I. Luminosity and Redshift Evolution in Quasar Bias
- A 1.75 kpc/h Separation Dual AGN at z=0.36 in the COSMOS Field
- Clustering Analyses of 300,000 Photometrically Classified Quasars--II. The Excess on Very Small Scales
- Quasar Clustering at $25\kpch$ from a Complete Sample of Binaries
- The DEEP2 Galaxy Redshift Survey: AEGIS Observations of a Dual AGN at z=0.7
- Binary Quasars at High Redshift II: Sub-Mpc Clustering at z ~ 3-4
- An Offset Seyfert 2 Nucleus in the Minor Merger System NGC 3341
- Faint-end Quasar Luminosity Functions from Cosmological Hydrodynamic Simulations
- Supermassive Black Holes and Their Environments
- Termination of star formation by BH feedback in equal- and unequal-mass mergers of disk and elliptical galaxies
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- Cosmological simulations of black hole growth: AGN luminosities and downsizing
- The MassiveBlack-II Simulation: The Evolution of Halos and Galaxies to z~0
- Cold flows and the first quasars
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological simulations
- Origin of the anti-hierarchical growth of black holes
- Cross-Correlation of SDSS DR7 Quasars and DR10 BOSS Galaxies: The Weak Luminosity Dependence of Quasar Clustering at z~0.5
- Black Hole - Galaxy Scaling Relationships for Active Galactic Nuclei with Reverberation Masses
- The Halo Occupation Distribution of SDSS Quasars
- Black hole feeding and feedback: the physics inside the "subgrid"
- Scaling relations between black holes and their host galaxies: comparing theoretical and observational measurements, and the impact of selection effects
- AGN contamination of galaxy-cluster thermal X-ray emission: predictions for eRosita from cosmological simulations
- The Formation of Galaxies Hosting z~6 Quasars
- The Halo Occupation Distribution of Active Galactic Nuclei
- Black hole clustering and duty cycles in the Illustris simulation
- Early Black Holes in Cosmological Simulations: Luminosity Functions and Clustering Behaviour
- A Direct Measurement of the Mean Occupation Function of Quasars: Breaking Degeneracies between Halo Occupation Distribution Models
- Growth of Early Supermassive Black Holes and the High-Redshift Eddington Ratio Distribution
- Quasar clustering in a galaxy and quasar formation model based on ultra high-resolution N-body simulations
- Measuring the luminosity and virial black hole mass dependence of quasar-galaxy clustering at z ~ 0.8
- The Halo Occupation Distribution of Black Holes: Dependence on Mass
- Luminosity function of [OII] emission-line galaxies in the MassiveBlack-II simulation
- Imprints of the super-Eddington accretion on the quasar clustering
- A study of the scaling relation for supermassive black holes and an update of the corresponding theoretical model