Testing Strict Hydrostatic Equilibrium in Simulated Clusters of Galaxies: Implications to Abell 1689
arXiv:1002.4691 · doi:10.1088/2041-8205/724/1/L1
Abstract
Accurate mass determination of clusters of galaxies is crucial if they are to be used as cosmological probes. However, there are some discrepancies between cluster masses determined based on gravitational lensing, and X-ray observations assuming strict hydrostatic equilibirium (i.e., the equilibrium gas pressure is provided entirely by thermal pressure). Cosmological simulations suggest that turbulent gas motions remaining from hierarchical structure formation may provide a significant contribution to the equilibrium pressure in clusters. We analyze a sample of massive clusters of galaxies drawn from high resolution cosmological simulations, and find a significant contribution (20%-45%) from non-thermal pressure near the center of relaxed clusters, and, in accord with previous studies, a minimum contribution at about 0.1 Rvir, growing to about 30%-45% at the virial radius, Rvir. Our results strongly suggest that relaxed clusters should have significant non-thermal support in their core region. As an example, we test the validity of strict hydrostatic equilibirium in the well-studied massive galaxy cluster Abell 1689 using the latest high resolution gravitational lensing and X-ray observations. We find a contribution of about 40% from non-thermal pressure within the core region of A1689, suggesting an alternate explanation for the mass discrepancy: the strict hydrostatic equilibirium is not valid in this region.
Accepted for publication in The Astrophysical Journal Letters; 4 pages, 3 figures
References in corpus (10)
- Weighing simulated galaxy clusters using lensing and X-ray
- LoCuSS: A Comparison of Cluster Mass Measurements from XMM-Newton and Subaru - Testing Deviation from Hydrostatic Equilibrium and Non-Thermal Pressure Support
- Suzaku Observation of Abell 1689: Anisotropic Temperature and Entropy Distributions Associated with the Large-Scale Structure
- Combining Lens Distortion and Depletion to Map the Mass Distribution of A1689
- A New Look at Massive Clusters: weak lensing constraints on the triaxial dark matter halos of Abell 1689, Abell 1835, & Abell 2204
- The Highest Resolution Mass Map of Galaxy Cluster Substructure To Date Without Assuming Light Traces Mass: LensPerfect Analysis of Abell 1689
- Mass and Gas Profiles in A1689: Joint X-ray and Lensing Analysis
- Measuring the Three-Dimensional Structure of Galaxy Clusters. II. Are clusters of galaxies oblate or prolate?
- On the influence of non-thermal pressure on the mass determination of galaxy clusters
- Cosmological Simulations of the Preheating Scenario for Galaxy Cluster Formation: Comparison to Analytic Models and Observations
Cited by in corpus (27)
- Cluster Lensing And Supernova survey with Hubble (CLASH): An Overview
- CLASH-VLT: The mass, velocity-anisotropy, and pseudo-phase-space density profiles of the z=0.44 galaxy cluster MACS 1206.2-0847
- CLASH: Precise New Constraints on the Mass Profile of Abell 2261
- Cluster Mass Profiles from a Bayesian Analysis of Weak Lensing Distortion and Magnification Measurements: Applications to Subaru Data
- A Precise Cluster Mass Profile Averaged from the Highest-Quality Lensing Data
- The Three-Dimensional Shapes of Galaxy Clusters
- Strong-Lensing Analysis of MACS,J0717.5+3745 from Hubble Frontier Fields observations: How well can the mass distribution be constrained?
- Three-dimensional Multi-probe Analysis of the Galaxy Cluster A1689
- Baryon Content of Massive Galaxy Clusters (0.57 < z < 1.33)
- Arc Statistics
- Mass, shape and thermal properties of A1689 by a multi-wavelength X-ray, lensing and Sunyaev-Zel'dovich analysis
- Weak and strong lensing analysis of the triaxial matter distribution of A1689
- The Role of Penetrating Gas Streams in Setting the Dynamical State of Galaxy Clusters
- Triaxiality and non-thermal gas pressure in Abell 1689
- CLUMP-3D. Three dimensional lensing and multi-probe analysis of MACS J1206.2-0847, a remarkably regular cluster
- CLUMP-3D: Three-dimensional Shape and Structure of 20 CLASH Galaxy Clusters from Combined Weak and Strong Lensing
- Shape and orientation of the gas distribution in A1689
- Non Thermal Support for the Outer Intracluster Medium
- The Pre-merger Impact Velocity of the Binary Cluster A1750 from X-ray, Lensing and Hydrodynamical Simulations
- A Grand Design for Galaxy Clusters: Connections and Predictions
- Line-of-sight gas sloshing in the cool core of Abell 907
- Testing hydrostatic equilibrium in galaxy cluster MS 2137
- Solution of the dark matter riddle within standard model physics: From black holes, galaxies and clusters to cosmology
- Are observations of the galaxy cluster Abell 1689 consistent with a neutrino dark matter scenario?
- CARMA observations of massive Planck-discovered cluster candidates at z>0.5 associated with WISE overdensities: Breaking the size-flux degeneracy
- Quantifying the collisionless nature of dark matter and galaxies in A1689
- AMiBA: Cluster Sunyaev-Zel'dovich Effect Observations with the Expanded 13-Element Array