Estimate of the total mechanical feedback energy from galaxy cluster-centered black holes: implications for black hole evolution, cluster gas fraction and entropy
arXiv:1105.5870 · doi:10.1088/0004-637X/738/2/155
Abstract
The total feedback energy injected into hot gas in galaxy clusters by central black holes can be estimated by comparing the potential energy of observed cluster gas profiles with the potential energy of non-radiating, feedback-free hot gas atmospheres resulting from gravitational collapse in clusters of the same total mass. Feedback energy from cluster-centered black holes expands the cluster gas, lowering the gas-to-dark matter mass ratio below the cosmic value. Feedback energy is unnecessarily delivered by radio-emitting jets to distant gas far beyond the cooling radius where the cooling time equals the cluster lifetime. For clusters of mass 4-11 X 10^14 Msun estimates of the total feedback energy, 1-3 X 10^63 ergs, far exceed feedback energies estimated from observations of X-ray cavities and shocks in the cluster gas, energies gained from supernovae, and energies lost from cluster gas by radiation. The time-averaged mean feedback luminosity is comparable to those of powerful quasars, implying that some significant fraction of this energy may arise from the spin of the black hole. The universal entropy profile in feedback-free gaseous atmospheres in NFW cluster halos can be recovered by multiplying the observed gas entropy profile of any relaxed cluster by a factor involving the gas fraction profile. While the feedback energy and associated mass outflow in the clusters we consider far exceed that necessary to stop cooling inflow, the time-averaged mass outflow at the cooling radius almost exactly balances the mass that cools within this radius, an essential condition to shut down cluster cooling flows.
17 pages, 5 figures, Accepted by ApJ; typos and references corrected, small revisions for clarity
References in corpus (22)
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Smoothed Particle Hydrodynamics in Astrophysics
- The Radiative Efficiency of Accretion Flows in Individual AGN
- The Black Hole Mass, Stellar M/L, and Dark Halo in M87
- Massive and Refined. II. The statistical properties of turbulent motions in massive galaxy clusters with high spatial resolution
- The Lx-Yx Relation: Using Galaxy Cluster X-Ray Luminosity as a Robust, Low Scatter Mass Proxy
- The virialized mass of dark matter haloes
- On the Origin of Cores in Simulated Galaxy Clusters
- Are Radio AGN Powered by Accretion or Black Hole Spin?
- X-ray observations of the galaxy cluster PKS 0745-191: To the virial radius, and beyond
- Observed properties of FRII quasars and radio galaxies at z < 1.0
- Revisiting the Baryon Fractions of Galaxy Clusters: A Comparison with WMAP 3-year Results
- On the Radio and Optical Luminosity Evolution of Quasars
- Entropy of gas and dark matter in galaxy clusters
- Measurement of the dark matter velocity anisotropy in galaxy clusters
- Energetics of X-ray Cavities and Radio Lobes in Galaxy Clusters
- The entropy core in galaxy clusters: numerical and physical effects in cosmological grid simulations
- Stopping Cooling Flows with Cosmic Ray Feedback
- Removing Cool Cores and Central Metallicity Peaks in Galaxy Clusters with Powerful AGN Outbursts
- Serendipitous XMM-Newton discovery of a cluster of galaxies at z=0.28
- The dark outside: the density profile of dark matter haloes beyond the virial radius
Cited by in corpus (20)
- Self-similar scaling and evolution in the galaxy cluster X-ray Luminosity-Temperature relation
- The gas distribution in the outer regions of galaxy clusters
- Tracing the Gas to the Virial Radius (R100) in a Fossil Group
- Hot gaseous atmospheres in galaxy groups and clusters are both heated and cooled by X-ray cavities
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- Thermal and non-thermal traces of AGN feedback: results from cosmological AMR simulations
- The galaxy cluster outskirts probed by Chandra
- Measuring the gas clumping in Abell 133
- A Deep Chandra Observation of the AGN Outburst and Merger in Hickson Compact Group 62
- On the Interaction of the PKS B1358-113 Radio Galaxy with the Abell 1836 Cluster
- Suzaku Observations of the X-ray Brightest Fossil Group ESO 3060170
- Gravothermal Catastrophe with a Cosmological Constant
- Energy Deposition Profiles and Entropy in Galaxy Clusters
- Very Large Array observations of the mini-halo and AGN feedback in the Phoenix cluster
- Joint Suzaku and Chandra observations of the MKW4 galaxy group out to the virial radius
- Radiating Bondi and Cooling Site Flows
- Unveiling Gargantua: A new search strategy for the most massive central cluster black holes
- Narrow Band X-ray Photometry as a Tool for Studying Galaxy and Cluster Mass Distributions
- On the Merging Cluster Abell 578 and Its Central Radio Galaxy 4C +67.13
- Fundamental parameters of FR II radio galaxies and their impact on groups and clusters' environments