Are Clusters Standard Candles? Galaxy Cluster Scaling Relations With the Sunyaev-Zeldovich Effect
arXiv:astro-ph/0106315 · doi:10.1086/344134
Abstract
An extensive sample of galaxy clusters will be available in the coming years, detected through their Sunyaev-Zeldovich effect (SZE). We use a semi-analytic model to study the scientific yield of combining SZE data with X-ray and optical follow-up observations. If clusters at a given redshift z_o can be identified with virialized, spherical halos, they populate a well-defined "fundamental plane" (FP) in the parameter space of the three observables: virial temperature (T), total Sunyaev-Zeldovich flux decrement (DS), and angular size (theta). The location and orientation of the FP, as well as its redshift-evolution, are sensitive to both the internal evolution of clusters, and to the underlying cosmological parameters. We show that if clusters are not standard candles (e.g. due to feedback, or energy injection), then this can be inferred from the FP. Likewise, we study the dependence of the FP on the cosmological parameters h, sigma_8, and Omega_0, and quantify constraints on these parameters. We also show that in the absence of any non-gravitational effects, the scatter in the the (DS-T) plane is significantly smaller than in either the (theta-T) or the (theta-DS) planes. As a result, the (DS-T) relation can be an exceptionally sensitive probe of both cluster physics and cosmological parameters, and a comparison of the amount of scatter in these three scaling relations will serve as a test of the origin (cosmological vs. stochastic) of the scatter.
Submitted to ApJ
References in corpus (10)
- Concentrations of Dark Halos from their Assembly Histories
- The Power Spectrum Dependence of Dark Matter Halo Concentrations
- Constraints on Omega_m, Omega_L, and Sigma_8, from Galaxy Cluster Redshift Distributions
- The effect of radiative cooling on scaling laws of X-ray groups and clusters
- Surveying the Sky with the Arcminute MicroKelvin Imager: Expected Constraints on Galaxy Cluster Evolution and Cosmology
- The Mass-Temperature Relation of 22 Nearby Clusters
- Antibias in Clusters: The Dependence of M/L on Cluster Temperature
- Statistics of Sunyaev-Zel'dovich Cluster Surveys
- Sunyaev-Zel'dovich Predictions for the Planck Surveyor Satellite using the Hubble Volume Simulations
- The Effect of Formation Redshifts on the Cluster Mass-Temperature Relation
Cited by in corpus (27)
- Effects of Scale-Dependent Non-Gaussianity on Cosmological Structures
- The Impact of Galaxy Formation on the Sunyaev-Zeldovich Effect of Galaxy Clusters
- Constraining cosmological parameters using Sunyaev-Zel'dovich cluster surveys
- X-ray Temperatures for the EMSS High Redshift Cluster Sample: Constraints on Cosmology and the Dark Energy Equation of State
- Measurements of Sunyaev-Zel'dovich Effect Scaling Relations for Clusters of Galaxies
- Constraining the Evolution of Dark Energy with a Combination of Galaxy Cluster Observables
- Self-Consistency and Calibration of Cluster Number Count Surveys for Dark Energy
- The Atacama Cosmology Telescope (ACT): Beam Profiles and First SZ Cluster Maps
- Dark Energy Constraints from Galaxy Cluster Peculiar Velocities
- Self-Consistent Theory of Halo Mergers
- Correlation properties of the kinematic Sunyaev-Zel'dovich effect and implications for Dark Energy
- The XMM Cluster Survey: Forecasting cosmological and cluster scaling-relation parameter constraints
- Measuring cluster peculiar velocities with the Sunyaev-Zeldovich effects: scaling relations and systematics
- WMAP constraints on the Intra-Cluster Medium
- Accurate Realizations of the Ionized Gas in Galaxy Clusters: Calibrating Feedback
- Augmenting astrophysical scaling relations with machine learning: application to reducing the Sunyaev-Zeldovich flux-mass scatter
- Sunyaev-Zel'dovich profiles and scaling relations: modelling effects and observational biases
- Can Virialization Shocks be Detected Around Galaxy Clusters Through the Sunyaev-Zel'dovich Effect?
- Constraints on the Energy Content of the Universe from a Combination of Galaxy Cluster Observables
- A critical analysis of high-redshift, massive galaxy clusters: I
- Breaking Cosmological Degeneracies in Galaxy Cluster Surveys with a Physical Model of Cluster Structure
- Stacking weak lensing signals of SZ clusters to constrain cluster physics
- Halo Concentrations and the New Baseline X-ray Luminosity-Temperature and Mass Relations of Galaxy Clusters
- Fundamental Plane of Sunyaev-Zeldovich clusters
- Probing Cosmology and Galaxy Cluster Structure with the Sunyaev-Zel'dovich Decrement vs. X-ray Temperature Scaling Relation
- Self-Consistent Theory of Halo Mergers - II: CDM Power Spectra
- Halo Concentrations and the Fundamental Plane of Galaxy Clusters