Physical component analysis of galaxy cluster weak gravitational lensing data
arXiv:astro-ph/0511287 · doi:10.1111/j.1365-2966.2006.10935.x
Abstract
We present a novel approach for reconstructing the projected mass distribution of clusters of galaxies from sparse and noisy weak gravitational lensing shear data. The reconstructions are regularised using knowledge gained from numerical simulations of clusters: trial mass distributions are constructed from N physically-motivated components, each of which has the universal density profile and characteristic geometry observed in simulated clusters. The parameters of these components are assumed to be distributed \emph{a priori} in the same way as they are in the simulated clusters. Sampling mass distributions from the components' parameters' posterior probability density function allows estimates of the mass distribution to be generated, with error bars. The appropriate number of components is inferred from the data itself via the Bayesian evidence, and is typically found to be small, reflecting the quality of the simulated data used in this work. Ensemble average mass maps are found to be robust to the details of the noise realisation, and succeed in recovering the input mass distribution (from a realistic simulated cluster) over a wide range of scales. We comment on the residuals of the reconstruction and their implications, and discuss the extension of the method to include strong lensing information.
12 pages, 7 figures
References in corpus (5)
- A Nested Sampling Algorithm for Cosmological Model Selection
- The Surprisingly Steep Mass Profile of Abell 1689, from a Lensing Analysis of Subaru Images
- Weak Lensing Analysis of the z~0.8 cluster CL 0152-1357 with the Advanced Camera for Surveys
- Abundance of substructure in clusters of galaxies
- HST/ACS weak lensing analysis of the galaxy cluster RDCS 1252.9-2927 at z=1.24
Cited by in corpus (16)
- Strong Lensing by Galaxies
- Cluster Lenses
- Analytic models of plausible gravitational lens potentials
- Focusing Cosmic Telescopes: Exploring Redshift z~5-6 Galaxies with the Bullet Cluster 1E0657-56
- Dissecting the Gravitational Lens B1608+656. I. Lens Potential Reconstruction
- A New Look at Massive Clusters: weak lensing constraints on the triaxial dark matter halos of Abell 1689, Abell 1835, & Abell 2204
- A Lensing Survey of X-ray Luminous Galaxy Clusters at Redshift z ~ 0.2: II: CFH12k Weak Lensing Analysis and Global Correlations
- Super-resolving distant galaxies with gravitational telescopes: Keck-LGSAO and Hubble imaging of the lens system SDSSJ0737+3216
- A Unifying Framework for Self-consistent Gravitational Lensing and Stellar Dynamics Analyses of Early-Type Galaxies
- An Atlas of Predicted Exotic Gravitational Lenses
- Cluster Bulleticity
- An MCMC Fitting Method for Triaxial Dark Matter Haloes
- Dark matter distribution in the merging cluster Abell 2163
- Reconstruction of Cluster Masses using Particle Based Lensing I: Application to Weak Lensing
- Modelling of the Complex CASSOWARY/SLUGS Gravitational Lenses
- A short review on joint weak and strong cluster lens-mass reconstruction