A simultaneous maximum likelihood approach for galaxy-galaxy lensing and cluster lens reconstruction
arXiv:astro-ph/9805034 · doi:10.1046/j.1365-8711.1999.02085.x
Abstract
In a previous paper we investigated means for constraining the mass distribution of cluster galaxies by weak lensing. We concluded that a comprehensive method should treat the lensing effects of individual cluster galaxies and those resulting from a general cluster component simultaneously. To this end we now develop a non-parametric maximum likelihood cluster reconstruction algorithm that can implicitly take into account the presence of cluster galaxies. The method includes an entropy-like regularization prescription and directly uses the ellipticities of individual source galaxy images as observables rather than relying on an averaged ellipticity field. The mass distribution of cluster galaxies is described by parametrized models. For each set of galaxy parameters the cluster reconstruction algorithm allows to determine the best representation of the global underlying cluster component that is consistent with the presence of the cluster galaxies and the observed image ellipticities of background galaxies. Tests with simulations yielded convincing and robust results. We applied the method to a WFPC2 image of the cluster Cl0939+4713 and obtained a detection of the lensing effects of luminous elliptical cluster galaxies. We consider this application as a successful test of our technique. However, the small size of the image we analysed does not yet allow to draw strong conclusions regarding the mass distribution of cluster galaxies.
13 pages, 9 figures, submitted to MNRAS
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- Masses of galaxy clusters from gravitational lensing
- Discovery of a Ringlike Dark Matter Structure in the Core of the Galaxy Cluster Cl 0024+17
- Truncation of galaxy dark matter halos in high density environments
- The orbital structure and potential of NGC 1399
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- Probing the truncation of galaxy dark matter halos in high density environments from hydrodynamical N-body simulations
- The sizes of galaxy halos in galaxy cluster Abell 1689
- Cluster Mass Profiles from Weak Lensing II
- Galaxy halo truncation and Giant Arc Surface Brightness Reconstruction in the Cluster MACSJ1206.2-0847
- XMM observation of the dynamically young galaxy cluster CL 0939+4713
- Probing the mass distribution in groups of galaxies using gravitational lensing
- Separating Galaxies from the Cluster Dark Matter Halo in Abell 611
- Probing the Slope of Cluster Mass Profile with Gravitational Einstein Rings: Application to Abell 1689
- Gravitational Lensing by Nearby Clusters of Galaxies
- Measuring dark matter ellipticity of Abell 901/902 using Particle Based Lensing
- The case for two-dimensional galaxy-galaxy lensing
- Galaxy-galaxy lensing in the VOICE deep survey
- Weak-lensing Mass Reconstruction of Galaxy Clusters with a Convolutional Neural Network -- II: Application to Next-Generation Wide-Field Surveys