An analytic approximation to the covariance between pre- and post-reconstruction galaxy two-point statistics
arXiv:2602.12343 · doi:10.1088/1475-7516/2026/05/078
Abstract
We present a simple analytic approximation for the covariance between pre-reconstruction galaxy power spectrum measurements and post-reconstruction two-point correlation functions. This cross-covariance is essential for joint analyses that combine full-shape clustering information with baryon acoustic oscillation (BAO) measurements, as commonly performed in modern spectroscopic surveys. Our model builds on the disconnected contribution to the covariance and accounts for the damping of correlations due to the BAO reconstruction process. We validate our analytic prescription against numerical simulations from the Dark Energy Spectroscopic Instrument (DESI), testing both idealized cubic geometries and realistic survey configurations including complex footprints and fiber assignment effects. Despite neglecting survey window functions in the analytic calculation, we find excellent agreement with simulation-based covariances and demonstrate that cosmological parameter constraints are virtually unchanged when using our approximation. Our results show that the pre-post cross-covariance is sufficiently small that even approximate treatments are adequate for cosmological inference, opening a pathway toward fully analytic covariance matrices for next-generation galaxy surveys.
9 pages + appendices and references. 5 figures. Code available at https://github.com/abaleato/PrePostCov. Minor changes to match version published in JCAP
References in corpus (24)
- The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes
- Cobaya: Code for Bayesian Analysis of hierarchical physical models
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Improving Cosmological Distance Measurements by Reconstruction of the Baryon Acoustic Peak
- GetDist: a Python package for analysing Monte Carlo samples
- Convolution Lagrangian perturbation theory for biased tracers
- Putting the Precision in Precision Cosmology: How accurate should your data covariance matrix be?
- EZmocks: extending the Zel'dovich approximation to generate mock galaxy catalogues with accurate clustering statistics
- DESI 2024 VII: Cosmological Constraints from the Full-Shape Modeling of Clustering Measurements
- A new analysis of galaxy 2-point functions in the BOSS survey, including full-shape information and post-reconstruction BAO
- Redshift-Space Distortions in Lagrangian Perturbation Theory
- Consistent Modeling of Velocity Statistics and Redshift-Space Distortions in One-Loop Perturbation Theory
- Galaxy Power Spectrum Multipoles Covariance in Perturbation Theory
- DESI 2024 V: Full-Shape Galaxy Clustering from Galaxies and Quasars
- Prime Focus Spectrograph for the Subaru telescope: massively multiplexed optical and near-infrared fiber spectrograph
- Baryon Acoustic Oscillation Theory and Modelling Systematics for the DESI 2024 results
- RascalC: A Jackknife Approach to Estimating Single and Multi-Tracer Galaxy Covariance Matrices
- Priors on red galaxy stochasticity from hybrid effective field theory
- Disconnected Covariance of 2-point Functions in Large-Scale Structure
- Mitigation of DESI fiber assignment incompleteness effect on two-point clustering with small angular scale truncated estimators
- Semi-analytical covariance matrices for two-point correlation function for DESI 2024 data
- A comparison of template vs. direct model fitting for redshift-space distortions in BOSS
- Analytical and EZmock covariance validation for the DESI 2024 results
- Robustness of the covariance matrix for galaxy clustering measurements