Thermal Conduction in Simulated Galaxy Clusters
arXiv:astro-ph/0401470 · doi:10.1086/420966
Abstract
We study the formation of clusters of galaxies using high-resolution hydrodynamic cosmological simulations that include the effect of thermal conduction with an effective isotropic conductivity of 1/3 the classical Spitzer value. We find that, both for a hot ( keV) and several cold ( keV) galaxy clusters, the baryonic fraction converted into stars does not change significantly when thermal conduction is included. However, the temperature profiles are modified, particularly in our simulated hot system, where an extended isothermal core is readily formed. As a consequence of heat flowing from the inner regions of the cluster both to its outer parts and into its innermost resolved regions, the entropy profile is altered as well. This effect is almost negligible for the cold cluster, as expected based on the strong temperature dependence of the conductivity. Our results demonstrate that while thermal conduction can have a significant influence on the properties of the intra--cluster medium of rich galaxy clusters, it appears unlikely to provide by itself a solution for the overcooling problem in clusters, or to explain the current discrepancies between the observed and simulated properties of the intra--cluster medium.
4 Pages, 3 Figures, Submitted to ApJ-Letters
References in corpus (10)
- X-ray properties of galaxy clusters and groups from a cosmological hydrodynamical simulation
- Near-IR Properties of Galaxy Clusters: Luminosity as a Binding Mass Predictor and the State of Cluster Baryons
- The Birmingham-CfA cluster scaling project - III: entropy and similarity in galaxy systems
- Thermal conduction and reduced cooling flows in galaxy clusters
- The mass profile of A1413 observed with XMM-Newton: implications for the M-T relation
- Heating, conduction and minimum temperatures in cooling flows
- Cooling and heating the ICM in hydrodynamical simulations
- Chandra Temperature Map of Abell 754 and Constraints on Thermal Conduction
- Feedback Heating in Cluster and Galactic Cooling Flows
- Problems in suppressing cooling flows in clusters of galaxies by global heat conduction
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