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Cosmological constraints using Minkowski functionals from the first year data of the Hyper Suprime-Cam

Joaquín Armijo, Gabriela A. Marques, Camila P. Novaes, Leander Thiele, Jessica Cowell, Daniela Grandón, Masato Shirasaki, Jia Liu

2025Monthly Notices of the Royal Astronomical Society12 citationsDOIOpen Access PDF

Abstract

ABSTRACT We use Minkowski functionals to analyse weak lensing convergence maps from the first-year data release of the Subaru Hyper Suprime-Cam (HSC-Y1) survey. Minkowski functionals provide a description of the morphological properties of a field, capturing the non-Gaussian features of the Universe matter-density distribution. Using simulated catalogues that reproduce survey conditions and encode cosmological information, we emulate Minkowski functionals predictions across a range of cosmological parameters to derive the best-fit from the data. By applying multiple scales cuts, we rigorously mitigate systematic effects, including baryonic feedback and intrinsic alignments. From the analysis, combining constraints of the angular power spectrum and Minkowski functionals, we obtain $S_8 \equiv \sigma _8\sqrt{\Omega _{{\rm m}}/0.3} = {0.808}_{-0.046}^{+0.033}$ and $\Omega _{\rm m} = {0.293}_{-0.043}^{+0.157}$. These results represent a 40 per cent improvement on the $S_8$ constraints compared to using power spectrum only. Minkowski functionals results are consistent with other two-point, and higher order statistics constraints using the same data, being in agreement with CMB results from the Planck $S_8$ measurements. Our study demonstrates the power of Minkowski functionals beyond two-point statistics to constrain and break the degeneracy between $\Omega _{\rm m}$ and $\sigma _8$.

Topics & Concepts

PhysicsMinkowski spaceAstrophysicsAstronomyMathematical physicsTheoretical physicsCosmology and Gravitation TheoriesRelativity and Gravitational TheoryAdvanced Mathematical Theories and Applications