Consistency of cosmic shear analyses in harmonic and real space
arXiv:2011.06469 · doi:10.1093/mnras/stab661
Abstract
Recent cosmic shear studies have reported discrepancies of up to on the parameter between the analysis of shear power spectra and two-point correlation functions, derived from the same shear catalogs. It is not a priori clear whether the measured discrepancies are consistent with statistical fluctuations. In this paper, we investigate this issue in the context of the forthcoming analyses from the third year data of the Dark Energy Survey (DES-Y3). We analyze DES-Y3 mock catalogs from Gaussian simulations with a fast and accurate importance sampling pipeline. We show that the methodology for determining matching scale cuts in harmonic and real space is the key factor that contributes to the scatter between constraints derived from the two statistics. We compare the published scales cuts of the KiDS, Subaru-HSC and DES surveys, and find that the correlation coefficients of posterior means range from over 80% for our proposed cuts, down to 10% for cuts used in the literature. We then study the interaction between scale cuts and systematic uncertainties arising from multiple sources: non-linear power spectrum, baryonic feedback, intrinsic alignments, uncertainties in the point-spread function, and redshift distributions. We find that, given DES-Y3 characteristics and proposed cuts, these uncertainties affect the two statistics similarly; the differential biases are below a third of the statistical uncertainty, with the largest biases arising from intrinsic alignment and baryonic feedback. While this work is aimed at DES-Y3, the tools developed can be applied to Stage-IV surveys where statistical errors will be much smaller.
Matches version accepted in MNRAS. 22 pages, 15 figures. Comments welcome!
References in corpus (18)
- KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics
- KiDS-1000 Cosmology: Multi-probe weak gravitational lensing and spectroscopic galaxy clustering constraints
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Extended Limber Approximation
- KiDS-450 + 2dFLenS: Cosmological parameter constraints from weak gravitational lensing tomography and overlapping redshift-space galaxy clustering
- Dark Energy Survey Year 3 Results: Photometric Data Set for Cosmology
- KiDS-450: The tomographic weak lensing power spectrum and constraints on cosmological parameters
- Dark Energy Survey Year 3 Results: Weak Lensing Shape Catalogue
- The Wide Field Infrared Survey Telescope: 100 Hubbles for the 2020s
- The Mira-Titan Universe II: Matter Power Spectrum Emulation
- Dark Energy Survey Year 1 Results: Multi-Probe Methodology and Simulated Likelihood Analyses
- KiDS-1000 Methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis
- Baryons, Neutrinos, Feedback and Weak Gravitational Lensing
- Dark Energy Survey Year 3 Results: Point-Spread Function Modeling
- Shear Power Spectrum Reconstruction using Pseudo-Spectrum Method
- Mitigating contamination in LSS surveys: a comparison of methods
- Unbiased pseudo-Cl power spectrum estimation with mode projection
- Minimising the impact of scale-dependent galaxy bias on the joint cosmological analysis of large scale structures
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- Dark Energy Survey Year 3 results: cosmological constraints from the analysis of cosmic shear in harmonic space
- Hefty enhancement of cosmological constraints from the DES Y1 data using a Hybrid Effective Field Theory approach to galaxy bias
- KiDS & Euclid: Cosmological implications of a pseudo angular power spectrum analysis of KiDS-1000 cosmic shear tomography
- Cosmic shear with small scales: DES-Y3, KiDS-1000 and HSC-DR1
- A Unified Catalog-level Reanalysis of Stage-III Cosmic Shear Surveys
- Field-level inference of galaxy intrinsic alignment from the SDSS-III BOSS survey
- Perturbation theory models for LSST-era galaxy clustering: tests with sub-percent mock catalog measurements in Fourier and configuration space
- Mitigating baryon feedback bias in cosmic shear through a theoretical error covariance in the matter power spectrum
- A new observable for cosmic shear
- An Estimator for the lensing potential from galaxy number counts
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- Galaxy Clustering in Harmonic Space from the Dark Energy Survey Year 1 Data: Compatibility with Real-Space Results
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