Gravitational Quenching by Clumpy Accretion in Cool Core Clusters: Convective Dynamical Response to Overheating
arXiv:1008.1060 · doi:10.1111/j.1365-2966.2011.18880.x
Abstract
Many galaxy clusters pose a "cooling-flow problem", where the observed X-ray emission from their cores is not accompanied by enough cold gas or star formation. A continuous energy source is required to balance the cooling rate over the whole core volume. We address the feasibility of a gravitational heating mechanism, utilizing the gravitational energy released by the gas that streams into the potential well of the cluster dark-matter halo. We focus here on a specific form of gravitational heating in which the energy is transferred to the medium thorough the drag exerted on inflowing gas clumps. Using spheri-symmetric hydro simulations with a subgrid representation of these clumps, we confirm our earlier estimates that in haloes >=10^13 solar masses the gravitational heating is more efficient than the cooling everywhere. The worry was that this could overheat the core and generate an instability that might push it away from equilibrium. However, we find that the overheating does not change the global halo properties, and that convection can stabilize the cluster by carrying energy away from the overheated core. In a typical rich cluster of 10^{14-15}solar masses, with ~5% of the accreted baryons in gas clumps of ~10^8 solar masses, we derive upper and lower limits for the temperature and entropy profiles and show that they are consistent with those observed in cool-core clusters. We predict the density and mass of cold gas and the level of turbulence driven by the clump accretion. We conclude that gravitational heating is a feasible mechanism for preventing cooling flows in clusters.
16 pages, 7 figures, accepted by MNRAS
References in corpus (24)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- Natural Downsizing in Hierarchical Galaxy Formation
- Accretion of gas onto nearby spiral galaxies
- Radial temperature profiles for a large sample of galaxy clusters observed with XMM-Newton
- Bursting and Quenching in Massive Galaxies without Major Mergers or AGNs
- Gravitational Quenching in Massive Galaxies and Clusters by Clumpy Accretion
- Distances to Galactic high-velocity clouds. I. Cohen Stream, complex GCP, cloud g1
- Magnetic support of the optical emission line filaments in NGC 1275
- Buoyancy Instabilities in Weakly Magnetized Low Collisionality Plasmas
- The Arecibo Legacy Fast ALFA Survey: III. HI Source Catalog of the Northern Virgo Cluster Region
- Measuring the non-thermal pressure in early type galaxy atmospheres: A comparison of X-ray and optical potential profiles in M87 and NGC1399
- Seeding the formation of cold gaseous clouds in Milky Way size halos
- A statistically-selected Chandra sample of 20 galaxy clusters -- I. Temperature and cooling time profiles
- An Accurate Distance to High-Velocity Cloud Complex C
- Adding Environmental Gas Physics to the Semi-Analytic Method for Galaxy Formation: Gravitational Heating
- Anisotropic Thermal Conduction and the Cooling Flow Problem in Galaxy Clusters
- Effect of turbulent diffusion on iron abundance profiles
- The Magnetothermal Instability in the Intracluster Medium
- Thermal Balance in the Intracluster Medium: Is AGN Feedback Necessary?
- Cold Fronts by Merging of Shocks
- Regulation of thermal conductivity in hot galaxy clusters by MHD turbulence
- The concentration-velocity dispersion relation in galaxy groups
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- Physical Models of Galaxy Formation in a Cosmological Framework
- Evolution of the Galaxy - Dark Matter Connection and the Assembly of Galaxies in Dark Matter Halos
- Absorption line systems in simulated galaxies fed by cold streams
- Evolution of Density Profiles in High-z Galaxies: Compaction and Quenching Inside-Out
- The evolution of massive black holes and their spins in their galactic hosts
- The Dependence of Quenching upon the Inner Structure of Galaxies at 0.5<z< 0.8 in the DEEP2/AEGIS Survey
- Forming Early-Type Galaxies in LambdaCDM Simulations -I. Assembly histories
- Hot gas in massive halos drives both mass quenching and environment quenching
- The Recent Burstiness of Star Formation in Galaxies at z~4.5 from H Measurements
- Properties of gas clumps and gas clumping factor in the intra cluster medium
- The Growth of Red Sequence Galaxies in a Cosmological Hydrodynamic Simulation
- Connection Between Stellar Mass Distributions Within Galaxies and Quenching Since z =2
- Galaxy formation in semi-analytic models and cosmological hydrodynamic zoom simulations
- Quenching Massive Galaxies with On-the-fly Feedback in Cosmological Hydrodynamic Simulations
- MAGIICAT III. Interpreting Self-Similarity of the Circumgalactic Medium with Virial Mass using MgII Absorption
- Cold Filamentary Accretion and the Formation of Metal Poor Globular Clusters and Halo Stars
- Constraining the Star Formation Histories in Dark Matter Halos: I. Central Galaxies
- Magnetic field amplification by shocks in galaxy clusters: application to radio relics
- The Role of Penetrating Gas Streams in Setting the Dynamical State of Galaxy Clusters
- Using Galaxy Pairs to Probe Star Formation During Major Halo Mergers
- Thermal Instabilities and Shattering in the High-Redshift WHIM: Convergence Criteria and Implications for Low-Metallicity Strong HI Absorbers
- Galaxy Mass, Metallicity, Radius and Star Formation Rates
- Fossil group origins IX. Probing the formation of fossil galaxy groups with stellar population gradients of their central galaxies
- An In-Depth Study of the Abundance Pattern in the Hot Interstellar Medium in NGC 4649
- Quenching vs. Quiescence: forming realistic massive ellipticals with a simple starvation model