Magnification by Galaxy Group Dark Matter Halos
arXiv:1111.3698 · doi:10.1088/0004-637X/754/2/143
Abstract
We report on the detection of gravitational lensing magnification by a population of galaxy groups, at a significance level of 4.9 sigma. Using X-ray selected groups in the COSMOS 1.64 deg^2 field, and high-redshift Lyman break galaxies as sources, we measure a lensing-induced angular cross-correlation between the samples. After satisfying consistency checks that demonstrate we have indeed detected a magnification signal, and are not suffering from contamination by physical overlap of samples, we proceed to implement an optimally weighted cross-correlation function to further boost the signal to noise of the measurement. Interpreting this optimally weighted measurement allows us to study properties of the lensing groups. We model the full distribution of group masses using a composite-halo approach, considering both the singular isothermal sphere and Navarro-Frenk-White profiles, and find our best fit values to be consistent with those recovered using the weak-lensing shear technique. We argue that future weak-lensing studies will need to incorporate magnification along with shear, both to reduce residual systematics and to make full use of all available source information, in an effort to maximize scientific yield of the observations.
6 pages, 3 figures, Accepted by ApJ
References in corpus (7)
- Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix
- Subaru Deep Survey V. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Photometric Properties
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Galaxies in X-ray Groups I: Robust Membership Assignment and the Impact of Group Environments on Quenching
- Handbook for the GREAT08 Challenge: An image analysis competition for cosmological lensing
- A Detection of Weak Lensing Magnification using Galaxy Sizes and Magnitudes
- Measuring Omega_0 with higher-order Quasar-Galaxy Correlations induced by Weak Lensing
Cited by in corpus (34)
- Cosmology with cosmic shear observations: a review
- CLASH: Weak-Lensing Shear-and-Magnification Analysis of 20 Galaxy Clusters
- CLASH: Joint Analysis of Strong-Lensing, Weak-Lensing Shear and Magnification Data for 20 Galaxy Clusters
- Masses of galaxy clusters from gravitational lensing
- Cluster-galaxy weak lensing
- The Weight of Emptiness: The Gravitational Lensing Signal of Stacked Voids
- Three-dimensional Multi-probe Analysis of the Galaxy Cluster A1689
- The Projected Dark and Baryonic Ellipsoidal Structure of 20 CLASH Galaxy Clusters
- Cluster Magnification & the Mass-Richness Relation in CFHTLenS
- CFHTLenS: The Environmental Dependence of Galaxy Halo Masses from Weak Lensing
- The Richness-to-Mass Relation of CAMIRA Galaxy Clusters from Weak-lensing Magnification in the Subaru Hyper Suprime-Cam Survey
- Model-Free Multi-Probe Lensing Reconstruction of Cluster Mass Profiles
- Detection of Enhancement in Number Densities of Background Galaxies due to Magnification by Massive Galaxy Clusters
- Observational biases in flux magnification measurements
- CFHTLenS: A Weak Lensing Shear Analysis of the 3D-Matched-Filter Galaxy Clusters
- Comparing gravitational redshifts of SDSS galaxy clusters with the magnification redshift enhancement of background BOSS galaxies
- CLUMP-3D: Three-dimensional Shape and Structure of 20 CLASH Galaxy Clusters from Combined Weak and Strong Lensing
- Mitigating Systematic Errors in Angular Correlation Function Measurements from Wide Field Surveys
- Magnification of Photometric LRGs by Foreground LRGs and Clusters in SDSS
- A New Approach to Identifying the Most Powerful Gravitational Lensing Telescopes
- Cluster Lensing Profiles Derived from a Redshift Enhancement of Magnified BOSS-Survey Galaxies
- Galaxies in X-ray Groups. III. Satellite Color and Morphology Transformations
- HerMES: A Deficit in the Surface Brightness of the Cosmic Infrared Background Due to Galaxy Cluster Gravitational Lensing
- Raytracing simulations of coupled dark energy models
- Weak lensing magnification of SpARCS galaxy clusters
- Weak lensing reconstruction through cosmic magnification. II. Improved power spectrum determination and map-making
- Large-scale imprint of relativistic effects in the cosmic magnification
- Cluster-lensing: A Python Package for Galaxy Clusters & Miscentering
- Line-of-sight Elongation and Hydrostatic Mass Bias of the Frontier Fields Galaxy Cluster Abell 370
- Intrinsic size correlations in weak lensing
- A Generalized Method for Measuring Weak Lensing Magnification With Weighted Number Counts
- Modelling the impact of intrinsic size and luminosity correlations on magnification estimation
- Probing Satellite Halos with Weak Gravitational Lensing
- Chasing the peak: optimal statistics for weak shear analyses