Combining cosmic shear data with correlated photo- uncertainties: constraints from DESY1 and HSC-DR1
arXiv:2210.13434 · doi:10.1088/1475-7516/2023/01/025
Abstract
An accurate calibration of the source redshift distribution is a key aspect in the analysis of cosmic shear data. This, one way or another, requires the use of spectroscopic or high-quality photometric samples. However, the difficulty to obtain colour-complete spectroscopic samples matching the depth of weak lensing catalogs means that the analyses of different cosmic shear datasets often use the same samples for redshift calibration. This introduces a source of statistical and systematic uncertainty that is highly correlated across different weak lensing datasets, and which must be accurately characterised and propagated in order to obtain robust cosmological constraints from their combination. In this paper we introduce a method to quantify and propagate the uncertainties on the source redshift distribution in two different surveys sharing the same calibrating sample. The method is based on an approximate analytical marginalisation of the statistical uncertainties and the correlated marginalisation of residual systematics. We apply this method to the combined analysis of cosmic shear data from the DESY1 data release and the HSC-DR1 data, using the COSMOS 30-band catalog as a common redshift calibration sample. We find that, although there is significant correlation in the uncertainties on the redshift distributions of both samples, this does not change the final constraints on cosmological parameters significantly. The same is true also for the impact of residual systematic uncertainties from the errors in the COSMOS 30-band photometric redshifts. Additionally, we show that these effects will still be negligible in Stage-IV datasets. Finally, the combination of DESY1 and HSC-DR1 allows us to constrain the ``clumpiness'' parameter to . This corresponds to a improvement in uncertainties with respect to either DES or HSC alone.
32 pages, 12 figures, comments welcome; v2: minor changes, accepted version in JCAP
References in corpus (20)
- The NumPy array: a structure for efficient numerical computation
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Data Calibration
- Calibrating Redshift Distributions Beyond Spectroscopic Limits with Cross-Correlations
- Estimating the Redshift Distribution of Faint Galaxy Samples
- A non-linear solution to the tension?
- The Wide Field Infrared Survey Telescope: 100 Hubbles for the 2020s
- Cosmological constraints from the tomographic cross-correlation of DESI Luminous Red Galaxies and Planck CMB lensing
- Using Galaxy Two-point Correlation Functions to Determine the Redshift Distributions of Galaxies Binned by Photometric Redshift
- Consistent lensing and clustering in a low- Universe with BOSS, DES Year 3, HSC Year 1 and KiDS-1000
- The growth of density perturbations in the last 10 billion years from tomographic large-scale structure data
- Dark Energy Survey Year 3 Results: Clustering Redshifts -- Calibration of the Weak Lensing Source Redshift Distributions with redMaGiC and BOSS/eBOSS
- Cosmological Analysis of Three-Dimensional BOSS Galaxy Clustering and Planck CMB Lensing Cross Correlations via Lagrangian Perturbation Theory
- Reconstructing Redshift Distributions with Cross-Correlations: Tests and an Optimized Recipe
- Dark Energy Survey Year 3 results: cosmological constraints from the analysis of cosmic shear in harmonic space
- Relaxing the -tension through running vacuum in the Universe
- Cosmic shear power spectra in practice
- Dark Energy Survey Year 3 Results: Exploiting small-scale information with lensing shear ratios
- Propagating sample variance uncertainties in redshift calibration: simulations, theory and application to the COSMOS2015 data
- Photometric Redshift Uncertainties in Weak Gravitational Lensing Shear Analysis: Models and Marginalization
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- Cosmic shear with small scales: DES-Y3, KiDS-1000 and HSC-DR1
- A Unified Catalog-level Reanalysis of Stage-III Cosmic Shear Surveys
- Analytical marginalisation over photometric redshift uncertainties in cosmic shear analyses
- Constraints on dark matter and astrophysics from tomographic -ray cross-correlations