Thermal Conduction and Multiphase Gas in Cluster Cores
arXiv:1310.2242 · doi:10.1093/mnras/stu138
Abstract
We examine the role of thermal conduction and magnetic fields in cores of galaxy clusters through global simulations of the intracluster medium (ICM). In particular, we study the influence of thermal conduction, both isotropic and anisotropic, on the condensation of multiphase gas in cluster cores. Previous hydrodynamic simulations have shown that cold gas condenses out of the hot ICM in thermal balance only when the ratio of the cooling time () and the free-fall time () is less than . Since thermal conduction is significant in the ICM and it suppresses local cooling at small scales, it is imperative to include thermal conduction in such studies. We find that anisotropic (along local magnetic field lines) thermal conduction does not influence the condensation criterion for a general magnetic geometry, even if thermal conductivity is large. However, with isotropic thermal conduction cold gas condenses only if conduction is suppressed (by a factor ) with respect to the Spitzer value.
7 pages, 4 figures; replaced by the MNRAS-accepted version
References in corpus (13)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- An Infrared Survey of Brightest Cluster Galaxies. II: Why are Some Brightest Cluster Galaxies Forming Stars?
- 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
- An Entropy Threshold for Strong H-alpha and Radio Emission in the Cores of Galaxy Clusters
- Preserving Monotonicity in Anisotropic Diffusion
- Buoyancy Instabilities in Weakly Magnetized Low Collisionality Plasmas
- Anisotropic Thermal Conduction and the Cooling Flow Problem in Galaxy Clusters
- Electron heat conduction in the solar wind: transition from Spitzer-Härm to the collisionless limit
- Conduction and the Star-Formation Threshold in Brightest Cluster Galaxies
- Models of magnetic-field evolution and effective viscosity in weakly collisional extragalactic plasmas
- Role of magnetic field strength and numerical resolution in simulations of the heat-flux driven buoyancy instability
- Astrophysical Coronae: Lessons from Modeling of the Intracluster Medium
Cited by in corpus (30)
- A Global Model For Circumgalactic and Cluster-Core Precipitation
- Modeling AGN Feedback in Cool-Core Clusters: The Formation of Cold Clumps
- Cool core cycles: Cold gas and AGN jet feedback in cluster cores
- The jet feedback mechanism (jfm) in stars, galaxies and clusters
- Modeling AGN Feedback in Cool-Core Clusters: The Balance between Heating and Cooling
- Interplay among Cooling, AGN Feedback and Anisotropic Conduction in the Cool Cores of Galaxy Clusters
- The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
- Statistical Study of Whistler Waves in the Solar Wind at 1 AU
- The impact of magnetic fields on thermal instability
- Cold Fronts: Probes of Plasma Astrophysics in Galaxy Clusters
- The failure of stellar feedback, magnetic fields, conduction, and morphological quenching in maintaining red galaxies
- Turbulence and cooling in galaxy cluster cores
- Triggering and Delivery Algorithms for AGN Feedback
- Cold gas in cluster cores: Global stability analysis and non-linear simulations of thermal instability
- Nonlinear evolution of the whistler heat flux instability
- Turbulence in the intracluster medium: simulations, observables & thermodynamics
- Non-isobaric Thermal Instability
- Growth and Evolution of Thermal Instabilities in Idealized Galaxy-Cluster Cores
- A Study of High-redshift AGN Feedback in SZ Cluster Samples
- Scalable explicit implementation of anisotropic diffusion with Runge-Kutta-Legendre super-time-stepping
- Heating Cold Clumps by Jet-inflated Bubbles in Cooling Flow Clusters
- The cold mode: A phenomenological model for the evolution of density perturbations in the intracluster medium
- AGN jets do not prevent the suppression of conduction by the heat buoyancy instability in simulated galaxy clusters
- The Effects of Ram Pressure on the Cold Clouds in the Centers of Galaxy Clusters
- Decoding X-ray observations from centres of galaxy clusters using MCMC
- On the nature of local instabilities in rotating galactic coronae and cool cores of galaxy clusters
- The Evaporation and Survival of Cluster Galaxies' Coronae Part I: The Effectiveness of Isotropic Thermal Conduction Including Saturation
- Rescuing the intracluster medium of NGC 5813
- CRexit: how different cosmic ray transport modes affect thermal instability in the circumgalactic medium
- Exploring supermassive black hole physics and galaxy quenching across halo mass in FIRE cosmological zoom simulations