CFHTLenS: A Gaussian likelihood is a sufficient approximation for a cosmological analysis of third-order cosmic shear statistics
arXiv:1502.04575 · doi:10.1093/mnras/stv339
Abstract
We study the correlations of the shear signal between triplets of sources in the Canada-France-Hawaii Lensing Survey (CFHTLenS) to probe cosmological parameters via the matter bispectrum. In contrast to previous studies, we adopted a non-Gaussian model of the data likelihood which is supported by our simulations of the survey. We find that for state-of-the-art surveys, similar to CFHTLenS, a Gaussian likelihood analysis is a reasonable approximation, albeit small differences in the parameter constraints are already visible. For future surveys we expect that a Gaussian model becomes inaccurate. Our algorithm for a refined non-Gaussian analysis and data compression is then of great utility especially because it is not much more elaborate if simulated data are available. Applying this algorithm to the third-order correlations of shear alone in a blind analysis, we find a good agreement with the standard cosmological model: = = for a flat cosmology with ( credible interval). Nevertheless our models provide only moderately good fits as indicated by , including a r.m.s. uncertainty in the predicted signal amplitude. The models cannot explain a signal drop on scales around 15 arcmin, which may be caused by systematics. It is unclear whether the discrepancy can be fully explained by residual PSF systematics of which we find evidence at least on scales of a few arcmin. Therefore we need a better understanding of higher-order correlations of cosmic shear and their systematics to confidently apply them as cosmological probes.
21 pages, 13 figures, accepted by MNRAS; edit of arXiv abstract; files are unchanged
References in corpus (68)
- Planck 2013 results. XVI. Cosmological parameters
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results
- Stable clustering, the halo model and nonlinear cosmological power spectra
- Revising the Halofit Model for the Nonlinear Matter Power Spectrum
- Euclid Definition Study Report
- Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix
- CFHTLenS: The Canada-France-Hawaii Telescope Lensing Survey
- CFHTLenS tomographic weak lensing cosmological parameter constraints: Mitigating the impact of intrinsic galaxy alignments
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys - III. Application to the Canada-France-Hawaii Telescope Lensing Survey
- CFHTLenS: The Canada-France-Hawaii Telescope Lensing Survey - Imaging Data and Catalogue Products
- Very weak lensing in the CFHTLS Wide: Cosmology from cosmic shear in the linear regime
- Reconstruction of lensing from the cosmic microwave background polarization
- CFHTLenS: Combined probe cosmological model comparison using 2D weak gravitational lensing
- The Skewness of the Aperture Mass Statistic
- Quantifying the effect of baryon physics on weak lensing tomography
- CFHTLenS: Improving the quality of photometric redshifts with precision photometry
- Detection of large scale intrinsic ellipticity-density correlation from the Sloan Digital Sky Survey and implications for weak lensing surveys
- First cosmic shear results from the Canada-France-Hawaii Telescope Wide Synoptic Legacy Survey
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -I. Methodology and a Fast Fitting Algorithm
- Constraints on intrinsic alignment contamination of weak lensing surveys using the MegaZ-LRG sample
- The Coyote Universe Extended: Precision Emulation of the Matter Power Spectrum
- Putting the Precision in Precision Cosmology: How accurate should your data covariance matrix be?
- Cosmological Constraints From the 100 Square Degree Weak Lensing Survey
- Super-Sample Covariance in Simulations
- CFHTLenS: The relation between galaxy dark matter haloes and baryons from weak gravitational lensing
- CFHTLenS: Testing the Laws of Gravity with Tomographic Weak Lensing and Redshift Space Distortions
- CFHTLenS: Cosmological constraints from a combination of cosmic shear two-point and three-point correlations
- Cosmic Shear Analysis with CFHTLS Deep data
- The WiggleZ Dark Energy Survey: Direct constraints on blue galaxy intrinsic alignments at intermediate redshifts
- Image Analysis for Cosmology: Results from the GREAT10 Galaxy Challenge
- Three-Point Correlations in Weak Lensing Surveys: Model Predictions and Applications
- On measuring the covariance matrix of the nonlinear power spectrum from simulations
- Weak Gravitational Lensing
- CFHTLenS: Mapping the Large Scale Structure with Gravitational Lensing
- Combining perturbation theories with halo models
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -II. Application to Simulations
- CFHTLenS tomographic weak lensing: Quantifying accurate redshift distributions
- 3D Cosmic Shear: Cosmology from CFHTLenS
- COSEBIs: Extracting the full E-/B-mode information from cosmic shear correlation functions
- Information content of weak lensing power spectrum and bispectrum: including the non-Gaussian error covariance matrix
- Dependence of cosmic shear covariances on cosmology - Impact on parameter estimation
- Weak lensing from space: first cosmological constraints from three-point shear statistics
- An improved fitting formula for the dark matter bispectrum
- Detection of dark matter Skewness in the VIRMOS-DESCART survey: Implications for Ω_0
- Cosmological parameters from combined second- and third-order aperture mass statistics of cosmic shear
- The three-point correlation function of cosmic shear: I. The natural components
- Information content of the non-linear power spectrum: the effect of beat-coupling to large scales
- Simulations of Weak Gravitational Lensing - II : Including Finite Support Effects in Cosmic Shear Covariance Matrices
- The three-point correlation function of cosmic shear. II: Relation to the bispectrum of the projected mass density and generalized third-order aperture measures
- Optimal capture of non-Gaussianity in weak lensing surveys: power spectrum, bispectrum and halo counts
- Gravitational Lensing Simulations I : Covariance Matrices and Halo Catalogues
- The non-Gaussianity of the cosmic shear likelihood - or: How odd is the Chandra Deep Field South?
- Sources of contamination to weak lensing three-point statistics: constraints from N-body simulations
- CFHTLenS: The Environmental Dependence of Galaxy Halo Masses from Weak Lensing
- Fast n-point correlation functions and three-point lensing application
- The consequences of parity symmetry for higher-order statistics of cosmic shear and other polar fields
- Copula Cosmology: Constructing a Likelihood Function
- Breaking the Degeneracy: Optimal Use of Three-point Weak Lensing Statistics
- Combining perturbation theories with halo models for the matter bispectrum
- CFHTLenS: Higher-order galaxy-mass correlations probed by galaxy-galaxy-galaxy lensing
- A New Data Compression Method and its Application to Cosmic Shear Analysis
- Source-lens clustering and intrinsic-alignment bias of weak-lensing estimators
- A theoretical estimate of intrinsic ellipticity bispectra induced by angular momenta alignments
- Constrained probability distributions of correlation functions
- Designing Weak Lensing Surveys: A Generalised Eigenmode Analysis
- A quasi-Gaussian approximation for the probability distribution of correlation functions
- Modeling of weak lensing statistics. II. Configuration-space statistics
Cited by in corpus (16)
- Cosmology with cosmic shear observations: a review
- Emulating the CFHTLenS Weak Lensing data: Cosmological Constraints from moments and Minkowski functionals
- A new model to predict weak-lensing peak counts II. Parameter constraint strategies
- Testing the lognormality of the galaxy and weak lensing convergence distributions from Dark Energy Survey maps
- Dark Energy Survey Year 3 results: cosmology with moments of weak lensing mass maps -- validation on simulations
- Fitting the nonlinear matter bispectrum by the Halofit approach
- Enhancing BOSS bispectrum cosmological constraints with maximal compression
- The skewed weak lensing likelihood: why biases arise, despite data and theory being sound
- KiDS-450: Tomographic Cross-Correlation of Galaxy Shear with {\it Planck} Lensing
- Machine Learning for Observational Cosmology
- Scale dependence of galaxy biasing investigated by weak gravitational lensing: An assessment using semi-analytic galaxies and simulated lensing data
- CFHTLenS: Weak lensing constraints on the ellipticity of galaxy-scale matter haloes and the galaxy-halo misalignment
- A roadmap to cosmological parameter analysis with third-order shear statistics III: Efficient estimation of third-order shear correlation functions and an application to the KiDS-1000 data
- Close galaxy pairs with accurate photometric redshifts
- Position-Dependent Correlation Function of Weak Lensing Convergence
- Constrained correlation functions from the Millennium Simulation