Quantifying the collisionless nature of dark matter and galaxies in A1689
arXiv:1008.2758 · doi:10.1088/0004-637X/728/1/40
Abstract
We use extensive measurements of the cluster A1689 to assess the expected similarity in the dynamics of galaxies and dark matter (DM) in their motion as collisionless `particles' in the cluster gravitational potential. To do so we derive the radial profile of the specific kinetic energy of the cluster galaxies from the Jeans equation and observational data. Assuming that the specific kinetic energies of galaxies and DM are roughly equal, we obtain the mean value of the DM velocity anisotropy parameter, and the DM density profile. Since this deduced profile has a scale radius that is higher than inferred from lensing observations, we tested the validity of the assumption by repeating the analysis using results of simulations for the profile of the DM velocity anisotropy. Results of both analyses indicate a significant difference between the kinematics of galaxies and DM within . This finding is reflected also in the shape of the galaxy number density profile, which flattens markedly with respect to the steadily rising DM profile at small radii. Thus, seems to be a transition region interior to which collisional effects significantly modify the dynamical properties of the galaxy population with respect to those of DM in A1689
8 pages, 6 figures, submitted to ApJ
References in corpus (14)
- Strong and weak lensing united III: Measuring the mass distribution of the merging galaxy cluster 1E0657-56
- A Dark Core in Abell 520
- Combining Lens Distortion and Depletion to Map the Mass Distribution of A1689
- Truncation of galaxy dark matter halos in high density environments
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- The Highest Resolution Mass Map of Galaxy Cluster Substructure To Date Without Assuming Light Traces Mass: LensPerfect Analysis of Abell 1689
- The Santa Fe Light Cone Simulation Project: I. Confusion and the WHIM in Upcoming Sunyaev-Zel'dovich Effect Surveys
- Mass and Gas Profiles in A1689: Joint X-ray and Lensing Analysis
- Measurement of the electron-pressure profile of galaxy clusters in Wilkinson Microwave Anisotropy Probe (WMAP) 3-year data
- Measurement of the dark matter velocity anisotropy in galaxy clusters
- Testing Strict Hydrostatic Equilibrium in Simulated Clusters of Galaxies: Implications to Abell 1689
- X-ray temperature spectroscopy of simulated cooling clusters
- Measuring the dark matter velocity anisotropy in galaxy clusters
- A New Approach for Simulating Galaxy Cluster Properties
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