Resolving the discrepancy between lensing and X-ray mass estimates of the complex galaxy cluster Abell 1689
arXiv:0811.2793 · doi:10.1088/0004-637X/693/2/1570
Abstract
There is a long-standing discrepancy between galaxy cluster masses determined from X-ray and gravitational lensing observations of which Abell 1689 is a well-studied example. In this work we take advantage of 180 ks of Chandra X-ray observations and a new weak gravitational study based on a Hubble Space Telescope mosaic covering the central 1.8 Mpc x 1.4 Mpc to eliminate the mass discrepancy. In contrast to earlier X-ray analyses where the very circular surface brightness has been inferred as Abell 1689 being spherically symmetric and in hydrostatic equilibrium, a hardness ratio map analysis reveals a regular and symmetric appearing main clump with a cool core plus some substructure in the North Eastern part of the cluster. The gravitational lensing mass model supports the interpretation of Abell 1689 being composed of a main clump, which is possibly a virialized cluster, plus some substructure. In order to avoid complications and mis-interpretations due to X-ray emission from the substructure, we exclude it from the mass reconstruction. Comparing X-ray and lensing mass profiles of the regular main part only, shows no significant discrepancy between the two methods and the obtained mass profiles are consistent over the full range where the mass can be reconstructed from X-rays (out to approx. 1 Mpc). The obtained cluster mass within approx. 875 kpc derived from X-rays alone is 6.4 plus/minus 2.1 x 10^14 solar masses compared to a weak lensing mass of 8.6 plus/minus 3.0 x 10^14 solar masses within the same radius.
9 pages, 10 figures, accepted by ApJ
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- The Highest Resolution Mass Map of Galaxy Cluster Substructure To Date Without Assuming Light Traces Mass: LensPerfect Analysis of Abell 1689
- Dynamical Study of A1689 from Wide-Field VLT/VIMOS Spectroscopy: Mass Profile, Concentration Parameter, and Velocity Anisotropy
- Unveiling the three-dimensional structure of galaxy clusters: resolving the discrepancy between X-ray and lensing masses
- X-ray Substructure Studies of Four Galaxy Clusters using XMM-Newton Data
- Testing adiabatic contraction with SDSS elliptical galaxies
- A Free-Form Lensing Grid Solution for A1689 with New Mutiple Images
- Probing the Astrophysics of Cluster Outskirts
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- Discrepant Mass Estimates in the Cluster of Galaxies Abell 1689
- Discovery of diffuse emission in the galaxy cluster A1689
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- Reconstructing the triaxiality of the galaxy cluster Abell 1689: solving the X-ray and strong lensing mass discrepancy
- Testing Strict Hydrostatic Equilibrium in Simulated Clusters of Galaxies: Implications to Abell 1689
- Moderate Steepening of Galaxy Cluster Dark Matter Profiles by Baryonic Pinching
- LoCuSS: Shedding New Light on the Massive Lensing Cluster Abell 1689 - The View From Herschel
- Data and 2D scaling relations for galaxies in Abell 1689: a hint of size evolution at z~0.2
- Cosmological Simulations of Massive Compact High-z Galaxies
- New Constraints on the Complex Mass Substructure in Abell 1689 from Gravitational Flexion
- Testing hydrostatic equilibrium in galaxy cluster MS 2137
- Dynamical analysis of strong-lensing galaxy groups at intermediate redshift
- An excursion into the core of the cluster lens Abell 1689
- Are observations of the galaxy cluster Abell 1689 consistent with a neutrino dark matter scenario?
- Quantifying the collisionless nature of dark matter and galaxies in A1689