Improving the precision matrix for precision cosmology
arXiv:1508.03162 · doi:10.1093/mnras/stv2259
Abstract
The estimation of cosmological constraints from observations of the large scale structure of the Universe, such as the power spectrum or the correlation function, requires the knowledge of the inverse of the associated covariance matrix, namely the precision matrix, . In most analyses, is estimated from a limited set of mock catalogues. Depending on how many mocks are used, this estimation has an associated error which must be propagated into the final cosmological constraints. For future surveys such as Euclid and DESI, the control of this additional uncertainty requires a prohibitively large number of mock catalogues. In this work we test a novel technique for the estimation of the precision matrix, the covariance tapering method, in the context of baryon acoustic oscillation measurements. Even though this technique was originally devised as a way to speed up maximum likelihood estimations, our results show that it also reduces the impact of noisy precision matrix estimates on the derived confidence intervals, without introducing biases on the target parameters. The application of this technique can help future surveys to reach their true constraining power using a significantly smaller number of mock catalogues.
9 pages, 7 figures, minor changes to match version accepted by MNRAS
References in corpus (1)
Cited by in corpus (41)
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: Observational systematics and baryon acoustic oscillations in the correlation function
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: cosmological implications of the configuration-space clustering wedges
- Constraints on Cosmology and Gravity from the Dynamics of Voids
- Cosmological constraints from BOSS with analytic covariance matrices
- The VIMOS Public Extragalactic Redshift Survey (VIPERS). Gravity test from the combination of redshift-space distortions and galaxy-galaxy lensing at
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: theoretical systematics and Baryon Acoustic Oscillations in the galaxy correlation function
- Comparing approximate methods for mock catalogues and covariance matrices I: correlation function
- Characterizing Signal Loss in the 21 cm Reionization Power Spectrum: A Revised Study of PAPER-64
- Fewer Mocks and Less Noise: Reducing the Dimensionality of Cosmological Observables with Subspace Projections
- Perturbation theory approach to predict the covariance matrices of the galaxy power spectrum and bispectrum in redshift space
- The BACCO simulation project: biased tracers in real space
- The Bacco Simulation Project: Bacco Hybrid Lagrangian Bias Expansion Model in Redshift Space
- Precision matrix expansion - efficient use of numerical simulations in estimating errors on cosmological parameters
- Non-linear shrinkage estimation of large-scale structure covariance
- RascalC: A Jackknife Approach to Estimating Single and Multi-Tracer Galaxy Covariance Matrices
- BAO from angular clustering: optimization and mitigation of theoretical systematics
- Galaxy 2-Point Covariance Matrix Estimation for Next Generation Surveys
- The perspective of voids on rising cosmology tensions
- Testing gravity with galaxy-galaxy lensing and redshift-space distortions using CFHT-Stripe 82, CFHTLenS and BOSS CMASS datasets
- Cosmological inference from emulator based halo model I: Validation tests with HSC and SDSS mock catalogs
- Estimating sparse precision matrices
- Modelling galaxy clustering in redshift space with a Lagrangian bias formalism and -body simulations
- The bias of dark matter tracers: assessing the accuracy of mapping techniques
- Cosmological Inference from Galaxy-Clustering Power Spectrum: Gaussianization and Covariance Decomposition
- RedMaPPer: Evolution and Mass Dependence of the Conditional Luminosity Functions of Red Galaxies in Galaxy Clusters
- Guess the cheese flavour by the size of its holes: A cosmological test using the abundance of Popcorn voids
- One simulation to have them all: performance of the Bias Assignment Method against N-body simulations
- Does jackknife scale really matter for accurate large-scale structure covariances?
- Robustness of the covariance matrix for galaxy clustering measurements
- Fitting covariance matrix models to simulations
- Estimating Differential Latent Variable Graphical Models with Applications to Brain Connectivity
- Optimal Weights For Measuring Redshift Space Distortions in Multi-tracer Galaxy Catalogues
- Bayesian Control Variates for optimal covariance estimation with pairs of simulations and surrogates
- Cosmological Model Parameter Dependence of the Matter Power Spectrum Covariance from the DEUS-PUR Simulations
- The halo 3-point correlation function: a methodological analysis
- Cosmological inference including massive neutrinos from the matter power spectrum: biases induced by uncertainties in the covariance matrix
- Approximate methods for the generation of dark matter halo catalogs in the age of precision cosmology
- Euclid: Fast two-point correlation function covariance through linear construction
- Cosmological constraints from galaxy multi-tracers in the nearby Universe
- Super sample covariance and the volume scaling of galaxy survey covariance matrices
- Origin & evolution of the Universe