Impact of point spread function higher moments error on weak gravitational lensing – II. A comprehensive study

Author:

Zhang Tianqing1ORCID,Almoubayyed Husni1ORCID,Mandelbaum Rachel1ORCID,Meyers Joshua E2,Jarvis Mike3,Kannawadi Arun4,Schmitz Morgan A5,Guinot Axel6,

Affiliation:

1. McWilliams Center for Cosmology, Department of Physics, Carnegie Mellon University , 5000 Forbes Ave, Pittsburgh, PA 15213, USA

2. Lawrence Livermore National Laboratory , Livermore, CA 94551, USA

3. Department of Physics and Astronomy, University of Pennsylvania , Philadelphia, PA 19104, USA

4. Department of Astrophysical Sciences, Princeton University , 4 Ivy Lane, Princeton, NJ 08544, USA

5. Observatoire de la Côte d’Azur, CNRS, Laboratoire Lagrange, Bd de l’Observatoire, Université Côte d’Azur , CS 34229, F-06304 Nice Cedex 4, France

6. CNRS, Astroparticule et Cosmologie, Université de Paris , F-75013 Paris, France

Abstract

ABSTRACT Weak lensing is one of the most powerful probes for dark matter and dark energy science, although it faces increasing challenges in controlling systematic uncertainties as the statistical errors become smaller. The point spread function (PSF) needs to be precisely modeled to avoid systematic error on the weak lensing measurements. The weak lensing biases induced by errors in the PSF model second moments, i.e. its size and shape, are well-studied. However, Zhang et al. showed that errors in the higher moments of the PSF may also be a significant source of systematics for upcoming weak lensing surveys. Therefore, this work comprehensively investigate the modelling quality of PSF moments from the 3rd to 6th order, and propagate the PSFEx higher moments modelling error in the HSC survey data set to the weak lensing shear–shear correlation functions and their cosmological analyses. The overall multiplicative shear bias associated with errors in PSF higher moments can cause an ∼0.1σ shift on the cosmological parameters for LSST Y10, while the associated additive biases can induce 1σ uncertainties in cosmology parameter inference for LSST Y10, if not accounted. We compare the PSFEx model with PSF in Full FOV, and find similar performance in modelling the PSF higher moments. We conclude that PSF higher moment errors of the future PSF models should be reduced from those in current methods, otherwise needed to be explicitly modeled in the weak lensing analysis.

Funder

Department of Energy

Simons Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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