A fitting formula for the non-Gaussian contribution to the lensing power spectrum covariance
arXiv:0907.1524 · doi:10.1051/0004-6361/200912854
Abstract
Weak gravitational lensing is one of the most promising tools to investigate the equation-of-state of dark energy. In order to obtain reliable parameter estimations for current and future experiments, a good theoretical understanding of dark matter clustering is essential. Of particular interest is the statistical precision to which weak lensing observables, such as cosmic shear correlation functions, can be determined. We construct a fitting formula for the non-Gaussian part of the covariance of the lensing power spectrum. The Gaussian contribution to the covariance, which is proportional to the lensing power spectrum squared, and optionally shape noise can be included easily by adding their contributions. Starting from a canonical estimator for the dimensionless lensing power spectrum, we model first the covariance in the halo model approach including all four halo terms for one fiducial cosmology and then fit two polynomials to the expression found. On large scales, we use a first-order polynomial in the wave-numbers and dimensionless power spectra that goes asymptotically towards for , i.e., the result for the non-Gaussian part of the covariance using tree-level perturbation theory. On the other hand, for small scales we employ a second-order polynomial in the dimensionless power spectra for the fit. We obtain a fitting formula for the non-Gaussian contribution of the convergence power spectrum covariance that is accurate to 10% for the off-diagonal elements, and to 5% for the diagonal elements, in the range and can be used for single source redshifts in WMAP5-like cosmologies.
23 pages, 15 figures, submitted to A&A
References in corpus (10)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Report of the Dark Energy Task Force
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- The Scale Dependence of Halo and Galaxy Bias: Effects in Real Space
- Simulations of Wide-Field Weak Lensing Surveys I: Basic Statistics and Non-Gaussian Effects
- Simulations of Baryon Acoustic Oscillations II: Covariance matrix of the matter power spectrum
- Probing dark energy with cluster counts and cosmic shear power spectra: including the full covariance
- Analysis of two-point statistics of cosmic shear: III. Covariances of shear measures made easy
- Cosmic variance of weak lensing surveys in the non-Gaussian regime
- Effects of halo substructure on the power spectrum and bispectrum
Cited by in corpus (24)
- Quantifying the effect of baryon physics on weak lensing tomography
- Weak lensing from space: first cosmological constraints from three-point shear statistics
- Cosmic shear covariance: The log-normal approximation
- Galaxy-galaxy lensing constraints on the relation between baryons and dark matter in galaxies in the Red Sequence Cluster Survey 2
- Estimating Cosmological Parameter Covariance
- Shear Power Spectrum Reconstruction using Pseudo-Spectrum Method
- Unveiling Galaxy Bias via the Halo Model, KiDS and GAMA
- Joint analysis of anisotropic power spectrum, bispectrum and trispectrum: application to N-body simulations
- Non-Gaussian Error Contribution to Likelihood Analysis of the Matter Power Spectrum
- Maximal compression of the redshift space galaxy power spectrum and bispectrum
- Simulations of Wide-Field Weak Lensing Surveys II: Covariance Matrix of Real Space Correlation Functions
- KiDS-1000: Combined halo-model cosmology constraints from galaxy abundance, galaxy clustering and galaxy-galaxy lensing
- Matter trispectrum: theoretical modelling and comparison to N-body simulations
- Breaking the Degeneracy: Optimal Use of Three-point Weak Lensing Statistics
- Cosmological information in Gaussianised weak lensing signals
- Self-calibration of weak lensing systematic effects using combined two- and three-point statistics
- The mass-concentration relationship of virialized halos and its impact on cosmological observables
- Probing galaxy bias and intergalactic gas pressure with KiDS Galaxies-tSZ-CMB lensing cross-correlations
- A Semi-analytic Ray-tracing Algorithm for Weak Lensing
- A New Data Compression Method and its Application to Cosmic Shear Analysis
- Fast generation of weak lensing maps by the inverse-Gaussianization method
- Euclid: Covariance of weak lensing pseudo- estimates. Calculation, comparison to simulations, and dependence on survey geometry
- Using large scale structure data and a halo model to constrain Generalised Dark Matter
- On the effect of projections on convergence peak counts and Minkowski functionals