Shape Profiles and Orientation Bias for Weak and Strong Lensing Cluster Halos
arXiv:1405.2035 · doi:10.1088/0004-637X/795/2/153
Abstract
We study the intrinsic shape and alignment of isodensities of galaxy cluster halos extracted from the MultiDark MDR1 cosmological simulation. We find that the simulated halos, are extremely prolate on small scales, and increasingly spherical on larger ones. Due to this trend, analytical projection along the line of sight produces an overestimate of the concentration index as a decreasing function of radius, which we quantify by using both the intrinsic distribution of 3D concentrations () and isodensity shape on weak and strong lensing scales. We find this difference to be () for low (medium) mass cluster halos with intrinsically low concentrations (), while we find virtually no difference for halos with intrinsically high concentrations. Isodensities are found to be fairly well-aligned throughout the entirety of the radial scale of each halo population. However, major axes of individual halos have been found to deviate by as much as . We also present a value-added catalog of our analysis results, which we have made publicly available to download.
9 pages, 6 figures, 3 tables
References in corpus (11)
- The spin and shape of dark matter haloes in the Millennium simulation of a LambdaCDM universe
- Combining Strong and Weak Gravitational Lensing in Abell 1689
- Introduction to astroML: Machine Learning for Astrophysics
- The Observed Concentration-Mass Relation for Galaxy Clusters
- The Shape of the Gravitational Potential in Cold Dark Matter Halos
- Parametric Strong Gravitational Lensing Analysis of Abell 1689
- Some like it triaxial: the universality of dark matter halo shapes and their evolution along the cosmic time
- The impact of gas physics on strong cluster lensing
- Arc sensitivity to cluster ellipticity, asymmetries and substructures
- Ellipsoidal halo finders and implications for models of triaxial halo formation
- The strongest gravitational lenses: I. The statistical impact of cluster mergers