Chaotic cold accretion in giant elliptical galaxies heated by AGN cosmic rays
arXiv:1910.03608 · doi:10.1093/mnras/staa550
Abstract
Black hole feedback plays a central role in shaping the circumgalactic medium (CGM) of elliptical galaxies. We systematically study the impact of plasma physics on the evolution of ellipticals by performing three-dimensional non-ideal magneto-hydrodynamic simulations of the interactions of active galactic nucleus (AGN) jets with the CGM including magnetic fields, and cosmic rays (CRs) and their transport processes. We find that the physics of feedback operating on large galactic scales depends very sensitively on plasma physics operating on small scales. Specifically, we demonstrate that: (i) in the purely hydrodynamical case, the AGN jets initially maintain the atmospheres in global thermal balance. However, local thermal instability generically leads to the formation of massive cold disks in the vicinity of the central black hole in disagreement with observations; (ii) including weak magnetic fields prevents the formation of the disks because local B-field amplification in the precipitating cold gas leads to strong magnetic breaking, which quickly extracts angular momentum from the accreting clouds. The magnetic fields transform the cold clouds into narrow filaments that do not fall ballistically; (iii) when plasma composition in the AGN jets is dominated by CRs, and CR transport is neglected, the atmospheres exhibit cooling catastrophes due to inefficient heat transfer from the AGN to CGM despite Coulomb/hadronic CR losses being present; (iv) including CR streaming and heating restores agreement with the observations, i.e., cooling catastrophes are prevented and massive cold central disks do not form. The AGN power is reduced as its energy is utilized efficiently.
submitted to MNRAS
References in corpus (15)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- An Infrared Survey of Brightest Cluster Galaxies. II: Why are Some Brightest Cluster Galaxies Forming Stars?
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- Magnetic support of the optical emission line filaments in NGC 1275
- How AGN Jets Heat the Intracluster Medium -- Insights from Hydrodynamic Simulations
- Collisional heating as the origin of filament emission in galaxy clusters
- A Very Deep Chandra Observation of the Galaxy Group NGC 5813: AGN Shocks, Feedback, and Outburst History
- Impact of tangled magnetic fields on AGN-blown bubbles
- Winds, Clumps, and Interacting Cosmic Rays in M82
- Do sound waves transport the AGN energy in the Perseus Cluster?
- The origin of molecular hydrogen emission in cooling-flow filaments
- Cosmic ray confinement in fossil cluster bubbles
- Sound waves in the intracluster medium of the Centaurus cluster
- Heating Cold Clumps by Jet-inflated Bubbles in Cooling Flow Clusters
Cited by in corpus (4)
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- Simulations of cosmic ray propagation
- Non-Kolmogorov turbulence in multiphase intracluster medium driven by cold gas precipitation and AGN jets
- Signature of Supersonic Turbulence in Galaxy Clusters Revealed by AGN-driven H Filaments