Constraining the Nature of X-ray Cavities in Clusters and Galaxies
arXiv:0801.1825 · doi:10.1086/591310
Abstract
We present results from an extensive survey of 64 cavities in the X-ray halos of clusters, groups and normal elliptical galaxies. We show that the evolution of the size of the cavities as they rise in the X-ray atmosphere is inconsistent with the standard model of adiabatic expansion of purely hydrodynamic models. We also note that the majority of the observed bubbles should have already been shredded apart by Rayleigh-Taylor and Richtmyer-Meshkov instabilities if they were of purely hydrodynamic nature. Instead we find that the data agrees much better with a model where the cavities are magnetically dominated and inflated by a current-dominated magneto-hydrodynamic jet model, recently developed by Li et al. (2006) and Nakamura et al. (2006). We conduct complex Monte-Carlo simulations of the cavity detection process including incompleteness effects to reproduce the cavity sample's characteristics. We find that the current-dominated model agrees within 1sigma, whereas the other models can be excluded at >5sigma confidence. To bring hydrodynamic models into better agreement, cavities would have to be continuously inflated. However, these assessments are dependent on our correct understanding of the detectability of cavities in X-ray atmospheres, and will await confirmation when automated cavity detection tools become available in the future. Our results have considerable impact on the energy budget associated with active galactic nucleus feedback.
21 pages, 12 figures, emulateapj, accepted for publication in ApJ, responded to referee's comments and added a new model, conclusions unchanged
References in corpus (12)
- Heating Hot Atmospheres with Active Galactic Nuclei
- AGN-controlled cooling in elliptical galaxies
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Impact of tangled magnetic fields on AGN-blown bubbles
- Asymmetries in the inner regions of LCDM haloes
- Modeling the Large Scale Structures of Astrophysical Jets in the Magnetically Dominated Limit
- The Hot Interstellar Medium of Normal Elliptical Galaxies. I. A Chandra Gas Gallery and Comparison of X-ray and Optical Morphology
- Stability Properties of Magnetic Tower Jets
- Structure of Magnetic Tower Jets in Stratified Atmospheres
- A Chandra Study of the Lobe/ISM Interactions Around the Inner Radio Lobes of Centaurus A: Constraints on the Temperature Structure and Transport Processes
- On the Rayleigh-Taylor Instability of Radio Bubbles in Galaxy Clusters
- The Hot Interstellar Medium in Normal Elliptical Galaxies. II. Morphological Evidence for AGN Feedback
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- A systematic search for X-ray cavities in galaxy clusters, groups, and elliptical galaxies
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- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- Self-regulated AGN feedback of light jets in cool-core galaxy clusters
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- The deepest view of RBS 797: evidence for two pairs of equidistant X-ray cavities
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- Connecting turbulent velocities and magnetic fields in galaxy cluster simulations with active galactic nuclei jets
- Observable consequences of kinetic and thermal AGN feedback in elliptical galaxies and galaxy clusters
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- On the Interaction of the PKS B1358-113 Radio Galaxy with the Abell 1836 Cluster
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- Testing the Limits of AGN Feedback and the Onset of Thermal Instability in the Most Rapidly Star Forming Brightest Cluster Galaxies