Searching for galaxy clusters using the aperture mass statistics in 50 VLT fields
arXiv:astro-ph/0504635 · doi:10.1051/0004-6361:20053339
Abstract
Application of the aperture mass (Map-) statistics provides a weak lensing method for the detection of cluster-sized dark matter halos. We present a new aperture filter function and maximise the effectiveness of the Map-statistics to detect cluster-sized halos using analytical models. We then use weak lensing mock catalogues generated from ray-tracing through N-body simulations, to analyse the effect of image treatment on the expected number density of halos. Using the Map-statistics, the aperture radius is typically several arcminutes, hence the aperture often lies partly outside a data field, consequently the signal-to-noise ratio of a halo detection decreases. We study these border effects analytically and by using mock catalogues. We find that the expected number density of halos decreases by a factor of two if the size of a field is comparable to the diameter of the aperture used. We finally report on the results of a weak lensing cluster search applying the Map-statistics to 50 randomly selected fields which were observed with FORS1 at the VLT. Altogether the 50 VLT fields cover an area of 0.64 square degrees. The I-band images were taken under excellent seeing conditions (average seeing 0.6 arcsec.) which results in a high number density of galaxies used for the weak lensing analysis (26/sq.arcmin). In five of the VLT fields, we detect a significant Map-signal which coincides with an overdensity of the light distribution. These detections are thus excellent candidates for shear-selected clusters.
23 pages, 5 tables, 24 figures, published in A&A, Sect. 3.5 and 7 are changed or altered; Fig. 11 is changed
References in corpus (4)
- Searching for massive clusters in weak lensing surveys
- GaBoDS: The Garching-Bonn Deep Survey -- I. Anatomy of galaxy clusters in the background of NGC 300
- GaBoDS: The Garching-Bonn Deep Survey -- II. Confirmation of EIS cluster candidates by weak gravitational lensing
- Weak lensing evidence for a filament between A222/A223
Cited by in corpus (48)
- Gravitational Lensing
- Cosmology with Weak Lensing Surveys
- Weighing the Giants - I. Weak-lensing masses for 51 massive galaxy clusters: project overview, data analysis methods and cluster images
- Cosmology with the shear-peak statistics
- The CFHTLS Strong Lensing Legacy Survey: I. Survey overview and T0002 release sample
- CARS: the CFHTLS-Archive-Research Survey; I. Five-band multi-colour data from 37 sq. deg. CFHTLS-Wide observations
- Cosmology constraints from shear peak statistics in Dark Energy Survey Science Verification data
- KiDS-450: Cosmological Constraints from Weak Lensing Peak Statistics - II: Inference from Shear Peaks using N-body Simulations
- The Cluster Mass Function from Weak Gravitational Lensing
- GaBoDS: The Garching-Bonn Deep Survey -- IX. A sample of 158 shear-selected mass concentration candidates
- A Subaru Weak Lensing Survey I: Cluster Candidates and Spectroscopic Verification
- Weak lensing survey of galaxy clusters in the CFHTLS Deep
- GaBoDS: The Garching-Bonn Deep Survey: VI. Cosmic shear analysis
- Weak lensing measurement of galaxy clusters in the CFHTLS-Wide survey
- An analytic approach to number counts of weak-lensing peak detections
- Euclid Preparation. XXVIII. Forecasts for ten different higher-order weak lensing statistics
- BLOX: The Bonn Lensing, Optical, and X-ray selected galaxy clusters -- I. Cluster catalog construction
- Persistent homology in cosmic shear: constraining parameters with topological data analysis
- Testing the reliability of weak lensing cluster detections
- SHELS: Testing Weak Lensing Maps with Redshift Surveys
- Probing dark energy with tomographic weak-lensing aperture mass statistics
- Persistent homology in cosmic shear II: A tomographic analysis of DES-Y1
- A new model to predict weak-lensing peak counts III. Filtering technique comparisons
- Subaru Weak Lensing survey -- II: Multi-object Spectroscopy and Cluster Masses
- Relative clustering and the joint halo occupation distribution of red-sequence and blue-cloud galaxies in COMBO-17
- Hundreds of weak lensing shear-selected clusters from the Hyper Suprime-Cam Subaru Strategic Program S19A data
- A weak lensing analysis of the Abell 2163 cluster
- Dark Matter Structures In The Deep Lens Survey
- Weak lensing and spectroscopic analysis of the nearby dissociative merging galaxy cluster Abell 3376
- The 400d Galaxy Cluster Survey weak lensing programme: II: Weak lensing study of seven clusters with MMT/Megacam
- The impact of baryonic physics and massive neutrinos on weak lensing peak statistics
- Weak lensing peak count as a probe of f(R) theories
- Effect of Measurement Errors on Predicted Cosmological Constraints from Shear Peak Statistics with LSST
- Revising the merger scenario of the galaxy cluster Abell 1644: a new gas poor structure discovered by weak gravitational lensing
- Testing Weak Lensing Maps With Redshift Surveys: A Subaru Field
- Reducing Systematic Error in Cluster Scale Weak Lensing
- The eROSITA Final Equatorial-Depth Survey (eFEDS): A complete census of X-ray properties of Subaru Hyper Suprime-Cam weak lensing shear-selected clusters in the eFEDS footprint
- Weak lensing mass estimates of galaxy groups and the line-of-sight contamination
- Mass Substructure in Abell 3128
- Dark Matter Distribution of Four Low-z Clusters of Galaxies
- Fast estimation of aperture-mass statistics I: aperture mass variance and an application to the CFHTLenS data
- Constraining the mass-concentration relation through weak lensing peak function
- A major galaxy cluster merger caught by eROSITA: weak lensing mass distribution and kinematic description
- Fast multiscale galaxy cluster detection with weak lensing: towards a mass-selected sample
- Masked areas in shear peak statistics: a forward modeling approach
- Mass - concentration relation and weak lensing peak counts
- Peaks in weak lensing mass maps for cluster astrophysics and cosmology
- AMICO-WL: an optimal filtering algorithm for galaxy cluster detections with weak lensing