LoCuSS: Exploring the selection of faint blue background galaxies for cluster weak-lensing
arXiv:1507.04376 · doi:10.1093/mnras/stw2192
Abstract
Cosmological constraints from galaxy clusters rely on accurate measurements of the mass and internal structure of clusters. An important source of systematic uncertainty in cluster mass and structure measurements is the secure selection of background galaxies that are gravitationally lensed by clusters. This issue has been shown to be particular severe for faint blue galaxies. We therefore explore the selection of faint blue background galaxies, by reference to photometric redshift catalogs derived from the COSMOS survey and our own observations of massive galaxy clusters at z~0.2. We show that methods relying on photometric redshifts of galaxies in/behind clusters based on observations through five filters, and on deep 30-band COSMOS photometric redshifts are both inadequate to identify safely faint blue background galaxies. This is due to the small number of filters used by the former, and absence of massive galaxy clusters at redshifts of interest in the latter. We therefore develop a pragmatic method to combine both sets of photometric redshifts to select a population of blue galaxies based purely on photometric analysis. This sample yields stacked weak-lensing results consistent with our previously published results based on red galaxies. We also show that the stacked clustercentric number density profile of these faint blue galaxies is consistent with expectations from consideration of the lens magnification signal of the clusters. Indeed, the observed number density of blue background galaxies changes by ~10-30 per cent across the radial range over which other surveys assume it to be flat.
submitted to MNRAS
References in corpus (10)
- COSMOS Photometric Redshifts with 30-bands for 2-deg2
- UltraVISTA: a new ultra-deep near-infrared survey in COSMOS
- The Canadian Cluster Comparison Project: detailed study of systematics and updated weak lensing masses
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Combining Strong and Weak Gravitational Lensing in Abell 1689
- CLASH: Weak-Lensing Shear-and-Magnification Analysis of 20 Galaxy Clusters
- LoCuSS: Weak-lensing mass calibration of galaxy clusters
- LoCuSS: Hydrostatic Mass Measurements of the High- Cluster Sample -- Cross-calibration of Chandra and XMM-Newton
- Mass and galaxy distributions of four massive galaxy clusters from Dark Energy Survey Science Verification data
- Mass Substructure in Abell 3128
Cited by in corpus (12)
- The galaxy cluster mass scale and its impact on cosmological constraints from the cluster population
- Cluster-galaxy weak lensing
- Cluster Mass Calibration at High Redshift: HST Weak Lensing Analysis of 13 Distant Galaxy Clusters from the South Pole Telescope Sunyaev-Zel'dovich Survey
- LoCuSS: Testing hydrostatic equilibrium in galaxy clusters
- Lensing Constraints on the Mass Profile Shape and the Splashback Radius of Galaxy Clusters
- Source Selection for Cluster Weak Lensing Measurements in the Hyper Suprime-Cam Survey
- The Projected Dark and Baryonic Ellipsoidal Structure of 20 CLASH Galaxy Clusters
- Weak lensing measurements of the APEX-SZ galaxy cluster sample
- First Weak-lensing Results from "See Change": Quantifying Dark Matter in the Two Z>1.5 High-redshift Galaxy Clusters SPT-CL J2040-4451 and IDCS J1426+3508
- Calibrating the Planck Cluster Mass Scale with Cluster Velocity Dispersions
- The SRG/eROSITA All-Sky Survey : Subaru/HSC-SSP weak-lensing mass measurements for the eRASS1 Galaxy Clusters
- Line-of-sight Elongation and Hydrostatic Mass Bias of the Frontier Fields Galaxy Cluster Abell 370