Cosmic shear covariance: The log-normal approximation
arXiv:1105.3980 · doi:10.1051/0004-6361/201117294
Abstract
[Abridged] We seek approximations to the cosmic shear covariance that are as easy to use as the common approximations based on normal statistics, but yield more accurate covariance matrices and parameter errors. We derive expressions for the cosmic shear covariance under the assumption that the underlying convergence field follows log-normal statistics. We also derive a simplified version of this log-normal approximation. We use numerical simulations of weak lensing to study how well the normal, log-normal, and simplified log-normal approximations as well as empirical corrections to the normal approximation proposed in the literature reproduce shear covariances for cosmic shear surveys. We find that the normal approximation substantially underestimates the cosmic shear covariances and the inferred parameter confidence regions, in particular for surveys with small fields of view and large galaxy densities, but also for very wide surveys. In contrast, the log-normal approximation yields more realistic covariances and confidence regions, but also requires evaluating slightly more complicated expressions. However, the simplified log-normal approximation, although as simple as the normal approximation, yields confidence regions that are almost as accurate as those obtained from the log-normal approximation. The empirical corrections to the normal approximation do not yield more accurate covariances and confidence regions than the (simplified) log-normal approximation. Moreover, they fail to produce positive-semidefinite data covariance matrices in certain cases, rendering them unusable for parameter estimation. The simplified log-normal approximation should be used in favour of the normal approximation for parameter estimation and parameter error forecasts. Any approximation to the cosmic shear covariance should ensure a positive-semidefinite data covariance matrix.
24 pages, revised version submitted to A&A, extendend results and discussion
References in corpus (16)
- The hierarchical formation of the brightest cluster galaxies
- Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix
- COSMOS: 3D weak lensing and the growth of structure
- Strong lensing optical depths in a \LambdaCDM universe
- Probability Distribution Functions of Cosmological Lensing: Convergence, Shear, and Magnification
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- Weak lensing from space: first cosmological constraints from three-point shear statistics
- 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
- Accurate Modeling of Weak Lensing with the sGL Method
- Simulations of Wide-Field Weak Lensing Surveys II: Covariance Matrix of Real Space Correlation Functions
- Re-capturing cosmic information
- Copula Cosmology: Constructing a Likelihood Function
- Forecasts of non-Gaussian parameter spaces using Box-Cox transformations
- Gaussianizing the non-Gaussian lensing convergence field I: the performance of the Gaussianization
- Dark Matter Structures In The Deep Lens Survey
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- Cosmic shear results from the deep lens survey - I: Joint constraints on omega_m and sigma_8 with a two-dimensional analysis
- KiDS-1000 Methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis
- Fisher for complements: Extracting cosmology and neutrino mass from the counts-in-cells PDF
- Dark Energy Survey Year 1 Results: Galaxy-Galaxy Lensing
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- On the inadequacy of N-point correlation functions to describe nonlinear cosmological fields: explicit examples and connection to simulations
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- Cosmic Shear: Inference from Forward Models
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- Euclid: The reduced shear approximation and magnification bias for Stage IV cosmic shear experiments
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- Accurate field-level weak lensing inference for precision cosmology
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- Euclid preparation. LIX. Angular power spectra from discrete observations
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- Testing Quadratic Maximum Likelihood estimators for forthcoming Stage-IV weak lensing surveys
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- A theoretical approach to density-split clustering
- Generative modeling of convergence maps based on predicted one-point statistics
- Non-Gaussian likelihood of weak lensing power spectra