Antibias in Clusters: The Dependence of M/L on Cluster Temperature
arXiv:astro-ph/0109366 · doi:10.1086/339245
Abstract
We show that the observed mass-to-light ratio of galaxy clusters increases with cluster temperature as expected from cosmological simulations. Contrary to previous observational suggestions, we find a mild but robust increase of M/L from poor (T = 1 - 2 keV) to rich (T = 12 keV) clusters; over this range, the mean M/L_V increases by a factor of about 2. The best fit relation satisfies M/L_V = (170 +- 30) T(keV)^(0.3 +- 0.1) h at z=0, with a large scatter. This trend confirms predictions from cosmological simulations which show that the richest clusters are antibiased, with a higher ratio of mass per unit light than average. The antibias increases with cluster temperature. The effect is caused by the relatively older age of the high-density clusters, where light has declined more significantly than average since their earlier formation time. Combining the current observations with simulations, we find a global value of M/L_V = 240 +- 50 h, and a corresponding mass density of the universe of Omega_m = 0.17 +- 0.05.
12 pages, 3 figs, minor changes, to be published in ApJL, Vol. 565 (Jan. 20, 2002)
Cited by in corpus (38)
- Tracing cosmic evolution with clusters of galaxies
- On the Mass-to-Light Ratio of Large Scale Structure
- K-band Properties of Galaxy Clusters and Groups: Luminosity Function, Radial Distribution and Halo Occupation Number
- The GEMS project: X-ray analysis and statistical properties of the group sample
- Near-IR Properties of Galaxy Clusters: Luminosity as a Binding Mass Predictor and the State of Cluster Baryons
- Towards a Concordant Model of Halo Occupation Statistics
- The Revival of the Unified Dark Energy-Dark Matter Model ?
- Galaxy clusters identified from the SDSS DR6 and their properties
- The Cluster Mass Function from Early SDSS Data: Cosmological Implications
- Towards Cosmological Concordance on Galactic Scales
- The RASS-SDSS Galaxy Cluster Survey. III. Scaling relations of galaxy clusters
- Absolute Values of Neutrino Masses: Status and Prospects
- RASS-SDSS Galaxy Cluster Survey. VII. On the Cluster Mass to Light ratio and the Halo Occupation Distribution
- Cross-correlation Weak Lensing of SDSS Galaxy Clusters III: Mass-to-light Ratios
- CAIRNS: The Cluster And Infall Region Nearby Survey II. Environmental Dependence of Infrared Mass-to-Light Ratios
- The Three-point Correlation Function of Galaxies Determined from the 2dF Galaxy Redshift Survey
- Properties of the galaxy population in hydrodynamical simulations of clusters
- HST/Acs Weak-Lensing and Chandra X-Ray Studies of the High-Redshift Cluster MS 1054-0321
- Lensing by galaxies in CNOC2 fields
- The Type-Ia Supernova Rate in z < 1 Galaxy Clusters: Implications for Progenitors and the Source of Cluster Iron
- The Birmingham-CfA cluster scaling project - II. Mass composition and distribution
- The near-infrared luminosity function of cluster galaxies beyond redshift one
- Tracing mass and light in the Universe: where is the dark matter?
- XMM-Newton/SDSS: star formation efficiency in galaxy clusters and constraints on the matter density parameter
- Star-formation efficiency and metal enrichment of the intracluster medium in local massive clusters of galaxies
- K-band Properties of Well-Sampled Groups of Galaxies
- NoSOCS in SDSS. II. Mass Calibration of Low Redshift Galaxy Clusters with Optical and X-ray Properties
- Are Clusters Standard Candles? Galaxy Cluster Scaling Relations With the Sunyaev-Zeldovich Effect
- The Effect of radiative cooling on the scale-dependence of global stellar and gas contents of groups and clusters of galaxies
- The scaling relations of galaxy clusters and their dark matter halos
- Spatial and Dynamical Biases in Velocity Statistics of Galaxies
- Disappearing Dark Matter in Brane World Cosmology: New Limits on Noncompact Extra Dimensions
- Cluster-Cluster Microlensing as a Probe of Intracluster Stars, MACHOs, and Remnants of the First Generation Stars
- SARCS strong lensing galaxy groups: I - optical, weak lensing, and scaling laws
- Cosmological Perturbations and the Running Cosmological Constant Model
- AGN-selected clusters as revealed by weak lensing
- `Hyper Parameters' Approach to Joint Estimation: Applications to Cepheid-Calibrated Distances and X-Ray Clusters
- Revisiting Galaxy Cluster Scaling Relations through Dark Matter-Gas Coherence: Scatter Dependence on Dynamical State