The Properties of X-ray Cold Fronts in a Statistical Sample of Simulated Galaxy Clusters
arXiv:1010.3260 · doi:10.1088/0004-637X/725/1/1053
Abstract
We examine the incidence of cold fronts in a large sample of galaxy clusters extracted from a (512h^-1 Mpc) hydrodynamic/N-body cosmological simulation with adiabatic gas physics computed with the Enzo adaptive mesh refinement code. This simulation contains a sample of roughly 4000 galaxy clusters with M > 10^14 M_sun at z=0. For each simulated galaxy cluster, we have created mock 0.3-8.0 keV X-ray observations and spectroscopic-like temperature maps. We have searched these maps with a new automated algorithm to identify the presence of cold fronts in projection. Using a threshold of a minimum of 10 cold front pixels in our images, corresponding to a total comoving length L_cf > 156h^-1 kpc, we find that roughly 10-12% of all projections in a mass-limited sample would be classified as cold front clusters. Interestingly, the fraction of clusters with extended cold front features in our synthetic maps of a mass-limited sample trends only weakly with redshift out to z=1.0. However, when using different selection functions, including a simulated flux limit, the trending with redshift changes significantly. The likelihood of finding cold fronts in the simulated clusters in our sample is a strong function of cluster mass. In clusters with M>7.5x10^14 M_sun the cold front fraction is 40-50%. We also show that the presence of cold fronts is strongly correlated with disturbed morphology as measured by quantitative structure measures. Finally, we find that the incidence of cold fronts in the simulated cluster images is strongly dependent on baryonic physics.
16 pages, 21 figures, Accepted to ApJ
References in corpus (18)
- Shocks and cold fronts in galaxy clusters
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- The speed of the `bullet' in the merging galaxy cluster 1E0657-56
- The Lx-Yx Relation: Using Galaxy Cluster X-Ray Luminosity as a Robust, Low Scatter Mass Proxy
- Cosmological Shocks in Adaptive Mesh Refinement Simulations and the Acceleration of Cosmic Rays
- Magnetic draping of merging cores and radio bubbles in clusters of galaxies
- Metal Cooling in Simulations of Cosmic Structure Formation
- Simulating the Bullet Cluster
- Cold fronts in galaxy clusters
- The Santa Fe Light Cone Simulation Project: I. Confusion and the WHIM in Upcoming Sunyaev-Zel'dovich Effect Surveys
- Substructure and Scatter in the Mass-Temperature Relations of Simulated Clusters
- Dynamics and Magnetization in Galaxy Cluster Cores Traced by X-ray Cold Fronts
- Core Gas Sloshing in Abell 1644
- Mass Estimation of Merging Galaxy Clusters
- X-ray Point Sources and Radio Galaxies in Clusters of Galaxies
- N-body + Magnetohydrodynamical Simulations of Merging Clusters of Galaxies: Characteristic Magnetic Field Structures Generated by Bulk Flow Motion
- Cold Fronts by Merging of Shocks
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- Structure and Turbulence in Simulated Galaxy Clusters and the Implications for the Formation of Radio Halos
- On The Road To More Realistic Galaxy Cluster Simulations: The Effects of Radiative Cooling and Thermal Feedback Prescriptions on the Observational Properties of Simulated Galaxy Clusters
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- Resilience of Sloshing Cold Fronts against Subsequent Minor Mergers