Cosmology from weak lensing peaks and minima with Subaru Hyper Suprime-Cam Survey first-year data

Author:

Marques Gabriela A123,Liu Jia4,Shirasaki Masato56,Thiele Leander7ORCID,Grandón Daniela89,Huffenberger Kevin M3ORCID,Cheng Sihao10ORCID,Harnois-Déraps Joachim11,Osato Ken121314ORCID,Coulton William R15ORCID

Affiliation:

1. Fermi National Accelerator Laboratory , P. O. Box 500, Batavia, IL 60510 , USA

2. Kavli Institute for Cosmological Physics, University of Chicago , Chicago, IL 60637 , USA

3. Department of Physics, Florida State University , Tallahassee, FL 32306 , USA

4. Center for Data-Driven Discovery , Kavli IPMU (WPI), UTIAS, The University of Tokyo, Kashiwa, Chiba 277-8583 , Japan

5. National Astronomical Observatory of Japan (NAOJ), National Institutes of Natural Sciences , Osawa, Mitaka, Tokyo 181-8588 , Japan

6. The Institute of Statistical Mathematics , Tachikawa, Tokyo 190-8562 , Japan

7. Department of Physics, Princeton University , Princeton, NJ 08544 , USA

8. Mathematical Institute, Leiden University , Snellius Gebouw, Niels Bohrweg 1, NL-2333 CA Leiden , the Netherlands

9. Grupo de Cosmología y Astrofísica Teórica, Departamento de Física, FCFM, Universidad de Chile , Blanco Encalada 2008, Santiago , Chile

10. Institute for Advanced Study , 1 Einstein Dr, Princeton, NJ 08540 , USA

11. School of Mathematics, Statistics and Physics, Newcastle University , Herschel Building, Newcastle-upon-Tyne NE1 7RU , UK

12. Center for Frontier Science, Chiba University , 1-33 Yayoicho, Inage, Chiba 263-8522 , Japan

13. Department of Physics, Graduate School of Science, Chiba University , 1-33 Yayoicho, Inage, Chiba 263-8522 , Japan

14. Kavli Institute for the Physics and Mathematics of the Universe, The University of Tokyo Institutes for Advanced Study , 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8583 , Japan

15. Center for Computational Astrophysics, Flatiron Institute , 162 5th Avenue, New York, NY 10010 , USA

Abstract

ABSTRACT We present cosmological constraints derived from peak counts, minimum counts, and the angular power spectrum of the Subaru Hyper Suprime-Cam first-year (HSC Y1) weak lensing shear catalogue. Weak lensing peak and minimum counts contain non-Gaussian information and hence are complementary to the conventional two-point statistics in constraining cosmology. In this work, we forward-model the three summary statistics and their dependence on cosmology, using a suite of N-body simulations tailored to the HSC Y1 data. We investigate systematic and astrophysical effects including intrinsic alignments, baryon feedback, multiplicative bias, and photometric redshift uncertainties. We mitigate the impact of these systematics by applying cuts on angular scales, smoothing scales, signal-to-noise ratio bins, and tomographic redshift bins. By combining peaks, minima, and the power spectrum, assuming a flat-ΛCDM model, we obtain $S_{8} \equiv \sigma _8\sqrt{\Omega _m/0.3}= 0.810^{+0.022}_{-0.026}$, a 35 per cent tighter constraint than that obtained from the angular power spectrum alone. Our results are in agreement with other studies using HSC weak lensing shear data, as well as with Planck 2018 cosmology and recent CMB lensing constraints from the Atacama Cosmology Telescope and the South Pole Telescope.

Funder

JSPS

NSF

National Science Foundation

Publisher

Oxford University Press (OUP)

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