Mass transport by buoyant bubbles in galaxy clusters
arXiv:1004.2050 · doi:10.1111/j.1365-2966.2010.16816.x
Abstract
We investigate the effect of three important processes by which AGN-blown bubbles transport material: drift, wake transport and entrainment. The first of these, drift, occurs because a buoyant bubble pushes aside the adjacent material, giving rise to a net upward displacement of the fluid behind the bubble. For a spherical bubble, the mass of upwardly displaced material is roughly equal to half the mass displaced by the bubble, and should be ~ 10^{7-9} solar masses depending on the local ICM and bubble parameters. We show that in classical cool core clusters, the upward displacement by drift may be a key process in explaining the presence of filaments behind bubbles. A bubble also carries a parcel of material in a region at its rear, known as the wake. The mass of the wake is comparable to the drift mass and increases the average density of the bubble, trapping it closer to the cluster centre and reducing the amount of heating it can do during its ascent. Moreover, material dropping out of the wake will also contribute to the trailing filaments. Mass transport by the bubble wake can effectively prevent the build-up of cool material in the central galaxy, even if AGN heating does not balance ICM cooling. Finally, we consider entrainment, the process by which ambient material is incorporated into the bubble. Abridged
Accepted for publication in MNRAS. 17 pages, 4 figures, 2 tables. Formatted for letter paper and adjusted author affiliations.
References in corpus (25)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- On the prevalence of radio-loud AGN in brightest cluster galaxies: implications for AGN heating of cooling flows
- Draping of Cluster Magnetic Fields over Bullets and Bubbles -- Morphology and Dynamic Effects
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- Formation of cold filaments in cooling flow clusters
- Towards a Holistic View of the Heating and Cooling of the Intracluster Medium
- A statistically-selected Chandra sample of 20 galaxy clusters -- II. Gas properties and cool-core/non-cool core bimodality
- Constraining the Nature of X-ray Cavities in Clusters and Galaxies
- Investigating Heating and Cooling in the BCS & B55 Cluster Samples
- Enrichment and Pre-Heating in Intragroup Gas from Galactic Outflows
- Metal mixing by buoyant bubbles in galaxy clusters
- Structure of Magnetic Tower Jets in Stratified Atmospheres
- Maximum Spin of Black Holes Driving Jets
- Suppressing cluster cooling flows by self-regulated heating from spatially distributed population of AGNs
- Evolution of X-ray cavities
- Observations of CO in the eastern filaments of NGC 1275
- Bubbles as tracers of heat input to cooling flows
- Rising Jet-Inflated Bubbles in Clusters of Galaxies
- Buoyant Bubbles in a Cooling Intracluster Medium I. Hydrodynamic Bubbles
- Gamma-ray emission associated with Cluster-scale AGN Outbursts
- Observable consequences of kinetic and thermal AGN feedback in elliptical galaxies and galaxy clusters
- Morphology of flows and buoyant bubbles in the Virgo cluster
- Cold gas in the Intra Cluster Medium: implications for flow dynamics and powering optical nebulae
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- A Ten Billion Solar Mass Outflow of Molecular Gas Launched by Radio Bubbles in the Abell 1835 Brightest Cluster Galaxy
- Galactic outflow rates in the EAGLE simulations
- A Galaxy-Scale Fountain of Cold Molecular Gas Pumped by a Black Hole
- Driving massive molecular gas flows in central cluster galaxies with AGN feedback
- Anisotropic Metal-enriched Outflows Driven by AGN in Clusters of Galaxies
- Massive molecular gas flows in the Abell 1664 brightest cluster galaxy
- Cool-Core Clusters : Role of BCG, Star Formation & AGN-Driven Turbulence
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- Cosmic Ray-Dominated AGN Jets and the Formation of X-ray Cavities in Galaxy Clusters
- Hydrodynamic Models of Radio Galaxy Morphology: Winged and X-shaped Sources
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- Isotropic Heating of Galaxy Cluster Cores via Rapidly Reorienting AGN Jets
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- Broadband radio polarimetry of Fornax A, I: Depolarized patches generated by advected thermal material from NGC 1316
- Bubble-driven Gas Uplift in Galaxy Clusters and its Velocity Features
- Building a cluster: shocks, cavities, and cooling filaments in the group-group merger NGC 6338
- Jets, Bubbles, and Heat Pumps in Galaxy Clusters
- Molecular Flows in Contemporary Active Galaxies and the Efficacy of Radio-Mechanical Feedback
- Metal-rich trailing outflows uplifted by AGN bubbles in galaxy clusters
- The complex interplay of AGN jet-inflated bubbles and the intracluster medium
- Molecular gas along the old radio jets of the cluster-central type 2 quasar IRAS 09104+4109
- Revealing a Highly-Dynamic Cluster Core in Abell 1664 with Chandra
- Hyenas: X-ray Bubbles and Cavities in the Intra-Group Medium
- Extended Line Emission in the BCG of Abell 2390
- A first Chandra view of the cool core cluster A1668: offset cooling and AGN feedback cycle
- The splash beneath the largest radio bubble in a cluster core
- Testing the Limits of AGN Feedback and the Onset of Thermal Instability in the Most Rapidly Star Forming Brightest Cluster Galaxies
- Star Formation Histories and Stellar Dynamics in the Central Galaxies of RX J0820.9+0752, A1835, and PKS 0745-191
- On the consistency of jet feedback modelling across different astrophysics hydrodynamical codes