Mass Distributions of HST Galaxy Clusters from Gravitational Arcs
arXiv:astro-ph/0511330 · doi:10.1086/500824
Abstract
Although N-body simulations of cosmic structure formation suggest that dark matter halos have density profiles shallower than isothermal at small radii and steeper at large radii, whether observed galaxy clusters follow this profile is still ambiguous. We use one such density profile, the asymmetric NFW profile, to model the mass distributions of 11 galaxy clusters with gravitational arcs observed by HST. We characterize the galaxy lenses in each cluster as NFW ellipsoids, each defined by an unknown scale convergence, scale radius, ellipticity, and position angle. For a given set of values of these parameters, we compute the arcs that would be produced by such a lens system. To define the goodness of fit to the observed arc system, we define a chi^2 function encompassing the overlap between the observed and reproduced arcs as well as the agreement between the predicted arc sources and the observational constraints on the source system. We minimize this chi^2 to find the values of the lens parameters that best reproduce the observed arc system in a given cluster. Here we report our best-fit lens parameters and corresponding mass estimates for each of the 11 lensing clusters. We find that cluster mass models based on lensing galaxies defined as NFW ellipsoids can accurately reproduce the observed arcs, and that the best-fit parameters to such a model fall within the reasonable ranges defined by simulations. These results assert NFW profiles as an effective model for the mass distributions of observed clusters.
Submitted to ApJ, 14 figures included
References in corpus (2)
Cited by in corpus (49)
- The Sloan Lens ACS Survey. IV: the mass density profile of early-type galaxies out to 100 effective radii
- Weak Gravitational Lensing and its Cosmological Applications
- Weighing simulated galaxy clusters using lensing and X-ray
- Lensing and X-ray mass estimates of clusters (SIMULATION)
- Extreme AGN feedback in the Massive Cluster Survey (MACS): a detailed study of X-ray cavities at z > 0.3
- Discovery of a Ringlike Dark Matter Structure in the Core of the Galaxy Cluster Cl 0024+17
- The Observed Concentration-Mass Relation for Galaxy Clusters
- The Shape of the Gravitational Potential in Cold Dark Matter Halos
- Strong lensing optical depths in a \LambdaCDM universe
- Hubble Space Telescope Observations of a Spectacular New Strong-lensing Galaxy Cluster - MACSJ1149.5+2223 at z=0.544
- Combining weak and strong cluster lensing: Applications to simulations and MS 2137
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- Arc sensitivity to cluster ellipticity, asymmetries and substructures
- The Mass Structure of the Galaxy Cluster Cl0024+1654 from a Full Lensing Analysis of Joint Subaru and ACS/NIC3 Observations
- Large Einstein Radii: A Problem for LambdaCDM
- Realistic simulations of gravitational lensing by galaxy clusters: extracting arc parameters from mock DUNE images
- Mass profiles and galaxy orbits in nearby galaxy clusters from the analysis of the projected phase-space
- Dark-Matter Decays and Self-Gravitating Halos
- The effects of ellipticity and substructure on estimates of cluster density profiles based on lensing and kinematics
- Mapping the allowed parameter space for decaying dark matter models
- Accurate Realizations of the Ionized Gas in Galaxy Clusters: Calibrating Feedback
- On the over-concentration problem of strong lensing clusters
- Measurement of the dark matter velocity anisotropy in galaxy clusters
- Cosmography with cluster strong lensing
- A Line-Of-Sight Galaxy Cluster Collision: Simulated X-Ray Observations
- Properties of Wide-separation Lensed Quasars by Clusters of Galaxies in the SDSS
- Gravitational arcs as a perturbation of the perfect ring
- The giant arc statistics in the three year WMAP cosmological model
- Systematics in lensing reconstruction: Dark matter rings in the sky?
- HST Discovery of a z = 3.9 Multiply Imaged Galaxy Behind the Complex Cluster Lens WARPS J1415.1+36 at z = 1.026
- X-ray and strong lensing mass estimate of MS2137.3-2353
- Probing the Slope of Cluster Mass Profile with Gravitational Einstein Rings: Application to Abell 1689
- MS 2053.7-0449: Confirmation of a bimodal mass distribution from strong gravitational lensing
- Constraints on the velocity profiles of galaxies from strong lensing statistics and semi-analytical modelling of galaxy formation
- Comparisons between isothermal and NFW mass profiles for strong-lensing galaxy clusters
- Domain of validity for pseudo-elliptical NFW lens models
- A detailed statistical analysis of the mass profiles of galaxy clusters
- Rings of Dark Matter in Collisions Between Clusters of Galaxies
- Statistical properties of SZ and X-ray cluster detections
- Testing hydrostatic equilibrium in galaxy cluster MS 2137
- Combining Optical and X-ray Observations of Galaxy Clusters to Constrain Cosmological Parameters
- The distant galaxy cluster CL0016+16: X-ray analysis up to
- The Spatially Resolved Dynamics of Dusty Starburst Galaxies in a z ~ 0.4 Cluster: Beginning the Transition from Spirals to S0s
- 3C 220.3: a radio galaxy lensing a submillimeter galaxy
- Highly-magnified, Multiply-imaged radio counterparts of the Sub-mm Starburst Emission in the Cluster-Lens MS0451.6-0305
- On the accuracy of the Perturbative Approach for Strong Lensing: Local Distortion for Pseudo-Elliptical Models
- Boosting the evolutionary picture of Cl 0024+17 and MS 0451-03: A case study at intermediate-redshift
- Analytic Solutions for Navarro--Frenk--White Lens Models for Low Characteristic Convergences
- Probing clustering features around Cl 0024+17