Background sky obscuration by cluster galaxies as a source of systematic error for weak lensing
arXiv:1406.4908 · doi:10.1093/mnras/stv313
Abstract
Lensing magnification and stacked shear measurements of galaxy clusters rely on measuring the density of background galaxies behind the clusters. The most common ways of measuring this quantity ignore the fact that some fraction of the sky is obscured by the cluster galaxies themselves, reducing the area in which background galaxies can be observed. We discuss the size of this effect in the Sloan Digital Sky Survey (SDSS) and the Canada-France-Hawaii Telescope Lensing Survey (CFHTLenS), finding a minimum 1 per cent effect at Mpc from the centers of clusters in SDSS; the effect is an order of magnitude higher in CFHTLenS. The resulting biases on cluster mass and concentration measurements are of the same order as the size of the obscuration effect, which is below the statistical errors for cluster lensing in SDSS but likely exceeds them for CFHTLenS. We also forecast the impact of this systematic error on cluster mass and magnification measurements in several upcoming surveys, and find that it typically exceeds the statistical errors. We conclude that future surveys must account for this effect in stacked lensing and magnification measurements in order to avoid being dominated by systematic error.
12 pages, 14 figures
References in corpus (12)
- Galaxies in the Hubble Ultra Deep Field: I. Detection, Multiband Photometry, Photometric Redshifts, and Morphology
- A GMBCG Galaxy Cluster Catalog of 55,424 Rich Clusters from SDSS DR7
- The Zurich Extragalactic Bayesian Redshift Analyzer (ZEBRA) and its first application: COSMOS
- Density profiles of galaxy groups and clusters from SDSS galaxy-galaxy weak lensing
- Methods for Rapidly Processing Angular Masks of Next-Generation Galaxy Surveys
- Image Analysis for Cosmology: Results from the GREAT10 Galaxy Challenge
- Galaxies in X-ray Groups. II. A Weak Lensing Study of Halo Centering
- Cross-correlation Weak Lensing of SDSS Galaxy Clusters I: Measurements
- A Statistical Study of Weak Lensing by Triaxial Dark Matter Halos: Consequences for Parameter Estimation
- The Masses and Shapes of Dark Matter Halos from Galaxy-Galaxy Lensing in the CFHTLS
- Separating intrinsic alignment and galaxy-galaxy lensing
- Size Bias in Galaxy Surveys
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