Discrepant Mass Estimates in the Cluster of Galaxies Abell 1689
arXiv:0906.4153 · doi:10.1088/0004-637X/701/2/1283
Abstract
We present a new mass estimate of a well-studied gravitational lensing cluster, Abell 1689, from deep Chandra observations with a total exposure of 200 ks. Within r=200 h-1 kpc, the X-ray mass estimate is systematically lower than that of lensing by 30-50%. At r>200 h-1 kpc, the mass density profiles from X-ray and weak lensing methods give consistent results. The most recent weak lensing work suggest a steeper profile than what is found from the X-ray analysis, while still in agreement with the mass at large radii. Previous studies have suggested that cooler small-scale structures can bias X-ray temperature measurements or that the northern part of the cluster is disturbed. We find these scenarios unlikely to resolve the central mass discrepancy since the former requires 70-90% of the space to be occupied by these cool structures and excluding the northern substructure does not significantly affect the total mass profiles. A more plausible explanation is a projection effect. We also find that the previously reported high hard-band to broad-band temperature ratio in A1689, and many other clusters observed with Chandra, may be resulting from the instrumental absorption that decreases 10-15% of the effective area at ~1.75 keV.
18 pages, 15 figures. ApJ accepted
References in corpus (17)
- Chandra temperature profiles for a sample of nearby relaxed galaxy clusters
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Systematics in the X-ray Cluster Mass Estimators
- Combining Strong and Weak Gravitational Lensing in Abell 1689
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Radial temperature profiles for a large sample of galaxy clusters observed with XMM-Newton
- The Observed Concentration-Mass Relation for Galaxy Clusters
- Parametric Strong Gravitational Lensing Analysis of Abell 1689
- Constraining supernova models using the hot gas in clusters of galaxies
- 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
- Observations of metals in the intra-cluster medium
- Mass and Gas Profiles in A1689: Joint X-ray and Lensing Analysis
- Bandpass Dependence of X-ray Temperatures in Galaxy Clusters
- Robust quantitative measures of cluster X-ray morphology, and comparisons between cluster characteristics
- The Sextet Arcs: a Strongly Lensed Lyman Break Galaxy in the ACS Spectroscopic Galaxy Survey towards Abell 1689
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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
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- 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
- A Free-Form Lensing Grid Solution for A1689 with New Mutiple Images
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- Discovery of diffuse emission in the galaxy cluster A1689
- Abell 611. II. X-ray and strong lensing analyses
- Reconstructing the triaxiality of the galaxy cluster Abell 1689: solving the X-ray and strong lensing mass discrepancy
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- Testing Strict Hydrostatic Equilibrium in Simulated Clusters of Galaxies: Implications to Abell 1689
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- LoCuSS: The splashback radius of massive galaxy clusters and its dependence on cluster merger history
- Data and 2D scaling relations for galaxies in Abell 1689: a hint of size evolution at z~0.2
- A new tool to determine masses and mass profiles using gravitational flexion
- New Constraints on the Complex Mass Substructure in Abell 1689 from Gravitational Flexion
- Testing hydrostatic equilibrium in galaxy cluster MS 2137
- Reconstructing the projected gravitational potential of Abell 1689 from X-ray measurements
- An excursion into the core of the cluster lens Abell 1689
- The Cosmic Background Imager 2
- The KALEIDOSCOPE survey : A new strong and weak gravitational lensing view of the massive galaxy cluster MACS J1423.8+2404
- CHEX-MATE: Multi-probe analysis of Abell 1689
- Quantifying the collisionless nature of dark matter and galaxies in A1689
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