The effect of AGN feedback on the halo mass function
arXiv:1402.1493 · doi:10.1093/mnras/stu673
Abstract
[Abridged.] We investigate baryon effects on the halo mass function (HMF), with emphasis on the role played by AGN feedback. Halos are identified with both Friends-of-Friends (FoF) and Spherical Overdensity (SO) algorithms. We embed the standard SO algorithm into a memory-controlled frame program and present the {\bf P}ython spher{\bf I}c{\bf A}l {\bf O}verdensity code --- {\small PIAO}. For both FoF and SO halos, the effect of AGN feedback is that of suppressing the HMFs to a level even below that of Dark Matter simulations. The ratio between the HMFs in the AGN and in the DM simulations is at overdensity , a difference that increases at higher overdensity , with no significant redshift and mass dependence. A decrease of the halo masses ratio with respect to the DM case induces the decrease of the HMF in the AGN simulation. The shallower inner density profiles of halos in the AGN simulation witnesses that mass reduction is induced by the sudden displacement of gas induced by thermal AGN feedback. We provide fitting functions to describe halo mass variations at different overdensities, which can recover the HMFs with a residual random scatter per cent for halo masses larger than .
16 pages, 11 figures. Matches to MNRAS published version, typo corrected in the fitting function
References in corpus (21)
- Planck 2015 results. XXIV. Cosmology from Sunyaev-Zeldovich cluster counts
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Towards a realistic population of simulated galaxy groups and clusters
- The halo mass function from the dark ages through the present day
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- The MassiveBlack-II Simulation: The Evolution of Halos and Galaxies to z~0
- Stellar and total baryon mass fractions in groups and clusters since redshift 1
- Non-linear Evolution of f(R) Cosmologies III: Halo Statistics
- The Halo Mass Function: High-Redshift Evolution and Universality
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- The impact of galaxy formation on the total mass, mass profile and abundance of haloes
- The abundance of (not just) dark matter haloes
- On the role of AGN feedback on the thermal and chemodynamical properties of the hot intra-cluster medium
- Planck Data Reconsidered
- Characterizing Diffused Stellar Light in simulated galaxy clusters
- The Structure of Halos: Implications for Group and Cluster Cosmology
- The impact of gas physics on strong cluster lensing
- The Effect of Gas Physics on the Halo Mass Function
- Dark matter halo abundances, clustering and assembly histories at high redshift
- The influence of baryons on the mass distribution of dark matter halos
- Nonlinearities in modified gravity cosmology. II. Impacts of modified gravity on the halo properties
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- The MassiveBlack-II Simulation: The Evolution of Halos and Galaxies to z~0
- Dark Energy Survey Year 1 Results: Cosmological Constraints from Cluster Abundances and Weak Lensing
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- The FLAMINGO project: cosmological hydrodynamical simulations for large-scale structure and galaxy cluster surveys
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- Bent by baryons: the low mass galaxy-halo relation
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- The FABLE simulations: A feedback model for galaxies, groups and clusters
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- The impact of baryonic physics on the subhalo mass function and implications for gravitational lensing
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- On the impact of baryons on the halo mass function, bias, and cluster cosmology
- How baryons affect halos and large-scale structure: a unified picture from the Simba simulation
- Dark Energy Survey Year 3 Results: Optimizing the Lens Sample in Combined Galaxy Clustering and Galaxy-Galaxy Lensing Analysis
- ELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias
- The separate and combined effects of baryon physics and neutrino free-streaming on large-scale structure
- On the dynamical state of galaxy clusters: insights from cosmological simulations II
- The scatter and evolution of the global hot gas properties of simulated galaxy cluster populations
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- HICOSMO - Cosmology with a complete sample of galaxy clusters: II. Cosmological results
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- Chandra deep observation of XDCP J0044.0-2033, a massive galaxy cluster at z>1.5
- The Persistence of Large Scale Structures I: Primordial non-Gaussianity
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- Neutrino constraints: what large-scale structure and CMB data are telling us?
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- Cosmological Structure Formation in Decaying Dark Matter Models
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- What to expect from dynamical modelling of cluster haloes I. The information content of different dynamical tracers
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- DUCA: Dynamic Universe Cosmological Analysis. I. The halo mass function in dynamical dark energy cosmologies
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