Self-Calibration of Cluster Dark Energy Studies: Observable-Mass Distribution
arXiv:astro-ph/0503363 · doi:10.1103/PhysRevD.72.043006
Abstract
The exponential sensitivity of cluster number counts to the properties of the dark energy implies a comparable sensitivity to not only the mean but also the actual_distribution_ of an observable mass proxy given the true cluster mass. For example a 25% scatter in mass can provide a ~50% change in the number counts at z~2 for the upcoming SPT survey. Uncertainty in the scatter of this amount would degrade dark energy constraints to uninteresting levels. Given the shape of the actual mass function, the properties of the distribution may be internally monitored by the shape of the_observable_ mass function. An arbitrary evolution of the scatter of a mass-independent Gaussian distribution may be self-calibrated to allow a measurement of the dark energy equation of state of Delta w ~0.1. External constraints on the mass_variance_ of the distribution that are more accurate than Delta var < 0.01 at z~1 can further improve constraints by up to a factor of 2. More generally, cluster counts and their sample variance measured as a function of the observable provide internal consistency checks on the assumed form of the observable-mass distribution that will protect against misinterpretation of the dark energy constraints.
6 pages, 6 figures, submitted to PRD
References in corpus (2)
Cited by in corpus (156)
- Toward a halo mass function for precision cosmology: the limits of universality
- Observational Probes of Cosmic Acceleration
- Chandra Cluster Cosmology Project III: Cosmological Parameter Constraints
- The Large Scale Bias of Dark Matter Halos: Numerical Calibration and Model Tests
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Chandra Cluster Cosmology Project II: Samples and X-ray Data Reduction
- Galaxy cluster X-ray luminosity scaling relations from a representative local sample (REXCESS)
- Dark Matter and Dark Energy Interactions: Theoretical Challenges, Cosmological Implications and Observational Signatures
- The Dependence of Halo Clustering on Halo Formation History, Concentration, and Occupation
- Precision Determination of the Mass Function of Dark Matter Halos
- A New Robust Low-Scatter X-ray Mass Indicator for Clusters of Galaxies
- Cosmological Constraints from the SDSS maxBCG Cluster Catalog
- Virial Scaling of Massive Dark Matter Halos: Why Clusters Prefer a High Normalization Cosmology
- Dark energy two decades after: Observables, probes, consistency tests
- On the Accuracy of Weak Lensing Cluster Mass Reconstructions
- A GMBCG Galaxy Cluster Catalog of 55,424 Rich Clusters from SDSS DR7
- A Weak Lensing Study of X-ray Groups in the COSMOS survey: Form and Evolution of the Mass-Luminosity Relation
- LoCuSS: Subaru Weak Lensing Study of 30 Galaxy Clusters
- MaxBCG: A Red Sequence Galaxy Cluster Finder
- Catalog Extraction in SZ Cluster Surveys: a matched filter approach
- Next Generation Cosmology: Constraints from the Euclid Galaxy Cluster Survey
- The Impact of Galaxy Formation on the Sunyaev-Zeldovich Effect of Galaxy Clusters
- Robust Optical Richness Estimation with Reduced Scatter
- The Atacama Cosmology Telescope: ACT-CL J0102-4915 "El Gordo," a Massive Merging Cluster at Redshift 0.87
- Massive Halos in Millennium Gas Simulations: Multivariate Scaling Relations
- Evidence for Non-Hydrostatic Gas from the Cluster X-ray to Lensing Mass Ratio
- Combining cluster observables and stacked weak lensing to probe dark energy: Self-calibration of systematic uncertainties
- Mass Calibration and Cosmological Analysis of the SPT-SZ Galaxy Cluster Sample Using Velocity Dispersion and X-ray Measurements
- Constraining the Scatter in the Mass-Richness Relation of maxBCG Clusters With Weak Lensing and X-ray Data
- The X-Ray Luminosity--Mass Relation for Local Clusters of Galaxies
- Effects of Mergers and Core Structure on the Bulk Properties of Nearby Galaxy Clusters
- Cosmology with massive neutrinos III: the halo mass function and an application to galaxy clusters
- Cosmological Constraints from the Red-Sequence Cluster Survey
- Cluster number counts dependence on dark energy inhomogeneities and coupling to dark matter
- Simultaneous Falsification of LCDM and Quintessence with Massive, Distant Clusters
- Redshifts, Sample Purity, and BCG Positions for the Galaxy Cluster Catalog from the first 720 Square Degrees of the South Pole Telescope Survey
- Weak lensing analysis of SZ-selected clusters of galaxies from the SPT and Planck surveys
- The Mean and Scatter of the Velocity Dispersion-Optical Richness Relation for maxBCG Galaxy Clusters
- The Cluster Mass Function from Weak Gravitational Lensing
- Radio Sources in Galaxy Clusters: Radial Distribution, and 1.4 GHz and K-band Bivariate Luminosity Function
- X-ray mass proxies from hydrodynamic simulations of galaxy clusters (paper I)
- Constraints on the mass-richness relation from the abundance and weak lensing of SDSS clusters
- The Correlation Function of Optically Selected Galaxy Clusters in the Sloan Digital Sky Survey
- Dark Energy Constraints from Galaxy Cluster Peculiar Velocities
- Cross-Correlation Lensing: Determining Galaxy and Cluster Mass Profiles from Statistical Weak Lensing Measurements
- The Effect of Gas Physics on the Halo Mass Function
- The mass-richness relation of optically-selected clusters from weak gravitational lensing and abundance with Subaru HSC first-year data
- Cluster Mass Estimators from CMB Temperature and Polarization Lensing
- The Local Bias Model in the Large Scale Halo Distribution
- A Measurement of the Galaxy Group-Thermal Sunyaev-Zel'dovich Effect Cross-Correlation Function
- Spectral Energy Distribution of Radio Sources in Nearby Clusters of Galaxies: Implications for Sunyaev-Zel'dovich Effect Surveys
- Cosmology with the Large Synoptic Survey Telescope: an Overview
- Combining clustering and abundances of galaxy clusters to test cosmology and primordial non-Gaussianity
- Primordial non-Gaussianity from the covariance of galaxy cluster counts
- LoCuSS: A Comparison of Sunyaev-Zel'dovich Effect and Gravitational Lensing Measurements of Galaxy Clusters
- Modelling Void Abundance in Modified Gravity
- Precision cosmology with a wide area XMM cluster survey
- Fundamental Physics from Future Weak-Lensing Calibrated Sunyaev-Zel'dovich Galaxy Cluster Counts
- The potential of X-ray cluster surveys to constrain primordial non-Gaussianity
- Cosmic variance of the galaxy cluster weak lensing signal
- Toward an accurate mass function for precision cosmology
- Cosmic tomographies: baryon acoustic oscillations and weak lensing
- Photometric Redshift Requirements for Self-Calibration of Cluster Dark Energy Studies
- The XMM Cluster Survey: Forecasting cosmological and cluster scaling-relation parameter constraints
- Sharpening the Precision of the Sunyaev-Zel'dovich Power Spectrum
- Merger induced scatter and bias in the cluster mass - Sunyaev-Zeldovich effect scaling relation
- Robust covariance estimation of galaxy-galaxy weak lensing: validation and limitation of jackknife covariance
- The Impact of Halo Properties, Energy Feedback and Projection Effects on the Mass-SZ Flux Relation
- Precision Measurements of the Cluster Red Sequence using an Error Corrected Gaussian Mixture Model
- Substructure and Scatter in the Mass-Temperature Relations of Simulated Clusters
- Measuring the neutrino mass from future wide galaxy cluster catalogues
- Lensing Magnification: Implications for Counts of Submillimeter Galaxies and SZ Clusters
- Near-Infrared Properties of Moderate-Redshift Galaxy Clusters: Halo Occupation Number, Mass-to-Light Ratios and Omega_m
- Sensitivity of galaxy cluster dark energy constraints to halo modeling uncertainties
- Richness-mass relation self-calibration for galaxy clusters
- Likelihood Methods for Cluster Dark Energy Surveys
- Cosmological Constraint Precision of the Photometric and Spectroscopic Multi-probe Surveys of China Space Station Telescope (CSST)
- Constraining Dark Energy with Clusters: Complementarity with Other Probes
- Primordial non-Gaussianity and Dark Energy constraints from Cluster Surveys
- Accurate Realizations of the Ionized Gas in Galaxy Clusters: Calibrating Feedback
- The Impact of Theoretical Uncertainties in the Halo Mass Function and Halo Bias on Precision Cosmology
- Estimating Luminosity Function Constraints from High-Redshift Galaxy Surveys
- Rhapsody-G simulations: galaxy clusters as baryonic closed boxes and the covariance between hot gas and galaxies
- A low-scatter survey-based mass proxy for clusters of galaxies
- Bias from gas inhomogeneities in the pressure profiles as measured from X-ray and SZ observations
- Microwave-Sky Simulations and Projections for Galaxy Cluster Detection with the Atacama Cosmology Telescope
- NoSOCS in SDSS. II. Mass Calibration of Low Redshift Galaxy Clusters with Optical and X-ray Properties
- The Effects of Halo Assembly Bias on Self-Calibration in Galaxy Cluster Surveys
- Cross-Calibration of Cluster Mass-Observables
- How baryons can significantly bias cluster count cosmology
- Combining cluster number counts and galaxy clustering
- Super-sample covariance approximations and partial sky coverage
- The WaZP galaxy cluster sample of the Dark Energy Survey Year 1
- Impact of systematics on cosmological parameters from future Galaxy Clusters surveys
- Scaling Rrelation in two situations of extreme mergers
- Cosmology with clusters of galaxies
- SZE Signals in Cluster Models
- Comparing halo bias from abundance and clustering
- Annealing a Follow-up Program: Improvement of the Dark Energy Figure of Merit for Optical Galaxy Cluster Surveys
- Linear and non-linear bias: predictions vs. measurements
- Self-Calibrated Cluster Counts as a Probe of Primordial Non-Gaussianity
- Constraining neutrino properties with a Euclid-like galaxy cluster survey
- Effects of Selection and Covariance on X-ray Scaling Relations of Galaxy Clusters
- Constraining the halo mass function with observations
- Stacked Weak Lensing Mass Calibration: Estimators, Systematics, and Impact on Cosmological Parameter Constraints
- The Influence of Concentration and Dynamical State on Scatter in the Galaxy Cluster Mass-Temperature Relation
- Optimizing weak lensing mass estimates for cluster profile uncertainty
- Cosmology with the largest galaxy cluster surveys: Going beyond Fisher matrix forecasts
- Influence of Projection in Cluster Cosmology Studies
- A robust lower limit on the amplitude of matter fluctuations in the universe from cluster abundance and weak lensing
- An Accurate Cluster Selection Function for the J-PAS Narrow-Band wide-field survey
- Non-Gaussian Scatter in Cluster Scaling Relations
- What do cluster counts really tell us about the Universe?
- Impact of Systematic Errors in Sunyaev-Zel'dovich Surveys of Galaxy Clusters
- Probing cosmology and gastrophysics with fast radio bursts: Cross-correlations of dark matter haloes and cosmic dispersion measures
- II. Apples to apples : cluster selection functions for next-generation surveys
- Precision cosmology with a combination of wide and deep Sunyaev-Zeldovich cluster surveys
- Cold dark energy constraints from the abundance of galaxy clusters
- Constraints on Modified Gravity from Sunyaev-Zeldovich Cluster Surveys
- Effects of Completeness and Purity on Cluster Dark Energy Constraints
- The Impact of Cluster Structure and Dynamical State on Scatter in the Sunyaev-Zel'dovich Flux-Mass Relation
- Simulation view of galaxy clusters with low X-ray surface brightness
- Breaking Cosmological Degeneracies in Galaxy Cluster Surveys with a Physical Model of Cluster Structure
- Probing dark energy with the next generation X-ray surveys of galaxy clusters
- Planck/SDSS Cluster Mass and Gas Scaling Relations for a Volume-Complete redMaPPer Sample
- Stacking Caustic Masses from Galaxy Clusters
- Testing model independent modified gravity with future large scale surveys
- Cross-correlating the Thermal Sunyaev-Zel'dovich Effect and the Distribution of Galaxy Clusters
- Cluster Probes of Dark Energy Clustering
- Mass Calibration of the CODEX Cluster Sample using SPIDERS Spectroscopy -- II. The X-ray Luminosity-Mass Relation
- The XXL Survey: XXXVIII. Scatters and correlations of X-ray proxies in the bright XXL cluster sample
- Detectability of Weak Lensing Modifications under Galileon Theories
- CHEX-MATE: CLUster Multi-Probes in Three Dimensions (CLUMP-3D), I. Gas Analysis Method using X-ray and Sunyaev-Zel'dovich Effect Data
- Constraints on Neutrino Mass from Sunyaev--Zeldovich Cluster Surveys
- Fundamental Plane of Sunyaev-Zeldovich clusters
- An Evolving Entropy Floor in the Intracluster Gas?
- Systematic Errors in Sunyaev-Zeldovich Surveys of Galaxy Cluster Velocities
- On the ISW-cluster cross-correlation in future surveys
- Constraints on Non-Gaussianity from Sunyaev--Zeldovich Cluster Surveys
- Temperature Structure and Mass-Temperature Scatter In Galaxy Clusters
- Self-calibrating optical galaxy cluster selection bias using cluster, galaxy, and shear cross-correlations
- Constraining Ultra-light Axions with Galaxy Cluster Number Counts
- X-ray cluster cosmology
- An expanded merger-tree description of cluster evolution
- Complementarity of Future Dark Energy Probes
- Toward optimal cluster power spectrum analysis
- Towards a Model-Independent Measurement of the Halo Mass Function with Observables
- B-modes from galaxy cluster alignments in future surveys
- The Three Hundred Project hydrodynamical simulations: Hydrodynamical weak-lensing cluster mass biases and richnesses using different hydro models
- Measuring the scatter of the mass-richness relation in galaxy clusters in photometric imaging surveys by means of their correlation function
- Sensitivity and Insensitivity of Galaxy Cluster Surveys to New Physics
- Impact of projection-induced optical selection bias on the weak lensing mass calibration of galaxy clusters
- The impact of projection effects on cluster observables: stacked lensing and projected clustering
- CHEX-MATE: Morphological analysis of the sample
- Do gas-poor galaxy clusters have different galaxy populations? The positive covariance of hot and cold baryons
- Built-in precision: Improving cluster cosmology through the self-calibration of a galaxy cluster sample