English

Detection of Cosmic Magnification via Galaxy Shear -- Galaxy Number Density Correlation from HSC Survey Data

Cosmology and Nongalactic Astrophysics 2021-06-07 v1

Abstract

We propose a novel method to detect cosmic magnification signals by cross-correlating foreground convergence fields constructed from galaxy shear measurements with background galaxy positional distributions, namely shear-number density correlation. We apply it to the Hyper Suprime-Cam Subaru Strategic Program (HSC-SSP) survey data. With 27 non-independent data points and their full covariance, χ0234.1\chi_0^2\approx 34.1 and χT224.0\chi_T^2\approx 24.0 with respect to the null and the cosmological model with the parameters from HSC shear correlation analyses in Hamana et al. 2020 (arXiv:1906.06041), respectively. The Bayes factor of the two is log10BT02.2\log_{10}B_{T0}\approx 2.2 assuming equal model probabilities of null and HSC cosmology, showing a clear detection of the magnification signals. Theoretically, the ratio of the shear-number density and shear-shear correlations can provide a constraint on the effective multiplicative shear bias mˉ\bar m using internal data themselves. We demonstrate the idea with the signals from our HSC-SSP mock simulations and rescaling the statistical uncertainties to a survey of 15000deg215000\deg^2. For two-bin analyses with background galaxies brighter than mlim=23m_{lim}=23, the combined analyses lead to a forecasted constraint of σ(mˉ)0.032\sigma(\bar m) \sim 0.032, 2.32.3 times tighter than that of using the shear-shear correlation alone. Correspondingly, σ(S8)\sigma(S_8) with S8=σ8(Ωm/0.3)0.5S_8=\sigma_8(\Omega_\mathrm{m}/0.3)^{0.5} is tightened by 2.1\sim 2.1 times. Importantly, the joint constraint on mˉ\bar m is nearly independent of cosmological parameters. Our studies therefore point to the importance of including the shear-number density correlation in weak lensing analyses, which can provide valuable consistency tests of observational data, and thus to solidify the derived cosmological constraints.

Keywords

Cite

@article{arxiv.2104.13595,
  title  = {Detection of Cosmic Magnification via Galaxy Shear -- Galaxy Number Density Correlation from HSC Survey Data},
  author = {Xiangkun Liu and Dezi Liu and Zucheng Gao and Chengliang Wei and Guoliang Li and Liping Fu and Toshifumi Futamase and Zuhui Fan},
  journal= {arXiv preprint arXiv:2104.13595},
  year   = {2021}
}

Comments

9 pages, 4 figures; Accepted for publication in PRD