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Joint cosmology and mass calibration from thermal Sunyaev-Zel’dovich cluster counts and cosmic shear

Author(s): Nicola, Andrina; Dunkley, Jo; Spergel, David N

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Abstract: We present a new method for joint cosmological parameter inference and cluster mass calibration from a combination of weak lensing measurements and the abundance of thermal Sunyaev-Zel’dovich (tSZ) selected galaxy clusters. We combine cluster counts with the spherical harmonic cosmic shear power spectrum and the cross-correlation between cluster overdensity and cosmic shear. These correlations constrain the cluster mass-observable relation. We model the observables using a halo model framework, including their full non-Gaussian covariance. Forecasting constraints on cosmological and mass calibration parameters for a combination of LSST cosmic shear and Simons Observatory tSZ cluster counts, we find competitive constraints for cluster cosmology, with a factor of 2 improvement in the dark energy figure of merit compared to LSST cosmic shear alone. We find most of the mass calibration information will be in the large and intermediate scales of the cross-correlation between cluster overdensity and cosmic shear. Finally, we find broadly comparable constraints to traditional analyses based on calibrating masses using stacked cluster lensing measurements, with the benefit of consistently accounting for the correlations with cosmic shear.
Publication Date: 5-Oct-2020
Electronic Publication Date: 5-Oct-2020
Citation: Nicola, Andrina, Dunkley, Jo, Spergel, David N. (Joint cosmology and mass calibration from thermal Sunyaev-Zel’dovich cluster counts and cosmic shear. Physical Review D, 102 (8), 10.1103/physrevd.102.083505
DOI: doi:10.1103/physrevd.102.083505
ISSN: 2470-0010
EISSN: 2470-0029
Language: en
Type of Material: Journal Article
Journal/Proceeding Title: Physical Review D
Version: Author's manuscript



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