The WARPS Survey: VI. Galaxy Cluster and Source Identifications from Phase I
arXiv:astro-ph/0112190 · doi:10.1086/339685
Abstract
We present in catalog form the optical identifications for objects from the first phase of the Wide Angle ROSAT Pointed Survey (WARPS). WARPS is a serendipitous survey of relatively deep, pointed ROSAT observations for clusters of galaxies. The X-ray source detection algorithm used by WARPS is Voronoi Tessellation and Percolation (VTP), a technique which is equally sensitive to point sources and extended sources of low surface brightness. WARPS-I is based on the central regions of 86 ROSAT PSPC fields, covering an area of 16.2 square degrees. We describe here the X-ray source screening and optical identification process for WARPS-I, which yielded 34 clusters at 0.06<z<0.75. Twenty-two of these clusters form a complete, statistically well defined sample drawn from 75 of these 86 fields, covering an area of 14.1 square degrees, with a flux limit of $F (0.5-2.0 keV) = 6.5 \times 10^{-14} erg cm^{-2} s^{-1}}$. This sample can be used to study the properties and evolution of the gas, galaxy and dark matter content of clusters, and to constrain cosmological parameters. We compare in detail the identification process and findings of WARPS to those from other recently published X-ray surveys for clusters, including RDCS, SHARC-Bright, SHARC-south and the CfA 160 deg survey.
v3 reflects minor updates to tables 2 and 3
References in corpus (9)
- Measuring with the ROSAT Deep Cluster Survey
- The ROSAT-ESO Flux Limited X-Ray (REFLEX) Galaxy Cluster Survey I: The Construction of the Cluster Sample
- The Intracluster Medium in z > 1 Galaxy Clusters
- Discovery of a very X-ray luminous galaxy cluster at z=0.89 in the WARPS survey
- Galaxy colours in high redshift X-ray selected clusters - I: Blue galaxy fractions in eight clusters
- Cluster Evolution in the ROSAT North Ecliptic Pole Survey
- New X-ray Clusters in the EMSS I: Modifications to the XLF
- Expectations for SZ cluster counts: mass function versus X-ray luminosity function
- New X-ray Clusters in the EMSS II: Optical Properties
Cited by in corpus (73)
- Observational Probes of Cosmic Acceleration
- The MCXC: a Meta-Catalogue of X-ray detected Clusters of galaxies
- The nature and space density of fossil groups of galaxies
- The XMM-Newton wide-field survey in the COSMOS field: VI. Statistical properties of clusters of galaxies
- The 400 square degrees ROSAT PSPC galaxy cluster survey: Catalog and statistical calibration
- The X-ray brightest clusters of galaxies from the Massive Cluster Survey
- Searching for Cool Core Clusters at High redshift
- Scaling laws in X-ray Galaxy Clusters at redshift between 0.4 and 1.3
- The XMM-LSS survey. Survey design and first results
- Extreme AGN feedback in the Massive Cluster Survey (MACS): a detailed study of X-ray cavities at z > 0.3
- Planck Early Results. X. Statistical analysis of Sunyaev-Zeldovich scaling relations for X-ray galaxy clusters
- The 160 Square Degree ROSAT Survey: the Revised Catalog of 201 Clusters with Spectroscopic Redshifts
- The Evolution of Structure in X-ray Clusters of Galaxies
- Scaling relations in fossil galaxy groups
- The cool core state of Planck SZ-selected clusters versus X-ray selected samples: evidence for cool core bias
- Iron abundance in the ICM at high redshift
- Scaling Relations and Overabundance of Massive Clusters at z>~1 from Weak-Lensing Studies with HST
- Constraining the cosmological parameters with the gas mass fraction in local and z>0.7 Galaxy Clusters
- The evolution of the cluster X-ray scaling relations in the WARPS sample at 0.6<z<1.0
- Cosmological constraints from evolution of cluster baryon mass function at z~0.5
- The XMM Cluster Survey: X-ray analysis methodology
- An Intensive HST Survey for z>1 Supernovae by Targeting Galaxy Clusters
- The ROSAT North Ecliptic Pole Survey: The Optical Identifications
- A fossil galaxy cluster; an X-ray and optical study of RX J1416.4+2315
- The distribution of AGN in a large sample of galaxy clusters
- Implications of multiple high-redshift galaxy clusters
- The environmental dependence of galaxy colors in intermediate redshift X-ray-selected clusters
- X-ray Selected Intermediate-Redshift Groups of Galaxies
- Galaxy Clusters in the Line of Sight to Background Quasars: I. Survey Design and Incidence of MgII Absorbers at Cluster Redshifts
- An XMM-Newton observation of the massive, relaxed galaxy cluster ClJ1226.9+3332 at z=0.89
- Evolution of the Cluster X-ray Luminosity Function
- The K band galaxy luminosity functions of three massive high redshift clusters of galaxies
- The Hubble Space Telescope Cluster Supernova Survey: II. The Type Ia Supernova Rate in High-Redshift Galaxy Clusters
- Robust quantitative measures of cluster X-ray morphology, and comparisons between cluster characteristics
- On the evolution of the entropy and pressure profiles in X-ray luminous galaxy clusters at z > 0.4
- Structure and substructure analysis of DAFT/FADA galaxy clusters in the [0.4-0.9] redshift range
- An X-ray selected catalog of extended galaxy clusters from the ROSAT All-Sky Survey (RXGCC)
- Deep Chandra observation of the galaxy cluster WARPJ1415.1+3612 at z=1: an evolved cool-core cluster at high-redshift
- Cosmology with clusters of galaxies
- Measuring redshift through X-ray spectroscopy of galaxy clusters: results from Chandra data and future prospects
- A pan-chromatic view of the galaxy cluster XMMU J1230.3+1339 at z=0.975 - Observing the assembly of a massive system
- An extension of the Planck galaxy cluster catalogue
- Lower AGN Abundance in Galaxy Clusters at z < 0.5
- The Chandra Deep Group Survey -- cool core evolution in groups and clusters of galaxies
- HST Discovery of a z = 3.9 Multiply Imaged Galaxy Behind the Complex Cluster Lens WARPS J1415.1+36 at z = 1.026
- Catalog of Radio Galaxies with z>0.3. I:Construction of the Sample
- On the Fe abundance peak formation in cool-core clusters of galaxies: hints from cluster WARPJ1415.1+3612 at z=1.03
- Galaxy Clusters at z>=1: Gas Constraints from the Sunyaev-Zel'dovich Array
- Suzaku observation of the giant radio galaxy 3C 326
- Chandra point-source counts in distant galaxy clusters
- The Serendipitous XMM-Newton Cluster Athens Survey (SEXCLAS): Sample selection and the cluster log N - log S
- Alignment of Galaxies and Clusters
- Deep learning for Sunyaev-Zel'dovich detection in Planck
- MCXC-II: Second release of the Meta-Catalogue of X-Ray detected Clusters of galaxies
- The Brera Multi-scale Wavelet HRI Cluster Survey: I Selection of the Sample and Number Counts
- Rest-Frame R-band Lightcurve of a z~1.3 Supernova Obtained with Keck Laser Adaptive Optics
- The SWIFT AGN and Cluster Survey I: Number Counts of AGN and Galaxy Clusters
- AMI SZ observations and Bayesian analysis of a sample of six redshift-one clusters of galaxies
- The Double Galaxy Cluster Abell 2465 I. Basic Properties: Optical Imaging and Spectroscopy
- The XMM Cluster Survey: evolution of the velocity dispersion -- temperature relation over half a Hubble time
- The WARPS Survey. VIII. Evolution of the Galaxy Cluster X-ray Luminosity Function
- A serendipitous survey for galaxy clusters by the XMM-Newton Survey Science Center
- The Planck SZ Cluster Catalog: Expected X-ray Properties
- AGN activity and IGM heating in fossil cluster RX J1416.4+2315
- The Evolution of Radio Galaxies and X-ray Point Sources in Coma Cluster Progenitors Since z~1.2
- XMM-Newton observations of the relaxed, high-redshift galaxy cluster ClJ0046.3+8530 at z=0.62
- Properties of serendipitous X-ray flares discovered in XMM-Newton observations
- The XMM Cluster Survey: Predicted overlap with the Planck Cluster Catalogue
- The Double Galaxy Cluster Abell 2465 III. X-ray and Weak-lensing Observations
- Evolution of X-ray galaxy Cluster Properties in a Representative Sample (EXCPReS). Optimal binning for temperature profile extraction
- YOLO-CL cluster detection in the Rubin/LSST DC2 simulation
- The Gemini/HST galaxy cluster project: Redshift 0.2-1.0 cluster sample, X-ray data and optical photometry catalog
- The Evolution of Cluster Substructure