Weak Lensing Reconstruction by Counting DECaLS Galaxies

Fuente: arXiv
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Main Authors: Qin, Jian, Zhang, Pengjie, Xu, Haojie, Yu, Yu, Yao, Ji, Ma, Ruijie, Shan, Huanyuan
Format: Preprint
Published: 2023
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author Qin, Jian
Zhang, Pengjie
Xu, Haojie
Yu, Yu
Yao, Ji
Ma, Ruijie
Shan, Huanyuan
author_facet Qin, Jian
Zhang, Pengjie
Xu, Haojie
Yu, Yu
Yao, Ji
Ma, Ruijie
Shan, Huanyuan
contents Alternative to weak lensing measurements through cosmic shear, we present a weak lensing convergence $\hatκ$ map reconstructed through cosmic magnification effect in DECaLS galaxies of the DESI imaging surveys DR9. This is achieved by linearly weighing $12$ maps of galaxy number overdensity in different magnitude bins of $grz$ photometry bands. The weight is designed to eliminate the mean galaxy deterministic bias, minimize galaxy shot noise while maintaining the lensing convergence signal. We also perform corrections of imaging systematics in the galaxy number overdensity. The $\hatκ$ map has $8365$ deg$^2$ sky coverage. Given the low number density of DECaLS galaxies, the $\hatκ$ map is overwhelmed by shot noise and the map quality is difficult to evaluate using the lensing auto-correlation. Alternatively, we measure its cross-correlation with the cosmic shear catalogs of DECaLS galaxies of DESI imaging surveys DR8, which has $8365$ deg$^2$ overlap in sky coverage with the $\hatκ$ map. We detect a convergence-shear cross-correlation signal with $S/N\simeq 10$. The analysis also shows that the galaxy intrinsic clustering is suppressed by a factor $\mathcal{O}(10^2)$ and the residual galaxy clustering contamination in the $\hatκ$ map is consistent with zero. Various tests with different galaxy and shear samples, and the Akaike information criterion analysis all support the lensing detection. So is the imaging systematics corrections, which enhance the lensing signal detection by $\sim 30\%$. We discuss various issues for further improvement of the measurements.
format Preprint
id arxiv_https___arxiv_org_abs_2310_15053
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Weak Lensing Reconstruction by Counting DECaLS Galaxies
Qin, Jian
Zhang, Pengjie
Xu, Haojie
Yu, Yu
Yao, Ji
Ma, Ruijie
Shan, Huanyuan
Cosmology and Nongalactic Astrophysics
Alternative to weak lensing measurements through cosmic shear, we present a weak lensing convergence $\hatκ$ map reconstructed through cosmic magnification effect in DECaLS galaxies of the DESI imaging surveys DR9. This is achieved by linearly weighing $12$ maps of galaxy number overdensity in different magnitude bins of $grz$ photometry bands. The weight is designed to eliminate the mean galaxy deterministic bias, minimize galaxy shot noise while maintaining the lensing convergence signal. We also perform corrections of imaging systematics in the galaxy number overdensity. The $\hatκ$ map has $8365$ deg$^2$ sky coverage. Given the low number density of DECaLS galaxies, the $\hatκ$ map is overwhelmed by shot noise and the map quality is difficult to evaluate using the lensing auto-correlation. Alternatively, we measure its cross-correlation with the cosmic shear catalogs of DECaLS galaxies of DESI imaging surveys DR8, which has $8365$ deg$^2$ overlap in sky coverage with the $\hatκ$ map. We detect a convergence-shear cross-correlation signal with $S/N\simeq 10$. The analysis also shows that the galaxy intrinsic clustering is suppressed by a factor $\mathcal{O}(10^2)$ and the residual galaxy clustering contamination in the $\hatκ$ map is consistent with zero. Various tests with different galaxy and shear samples, and the Akaike information criterion analysis all support the lensing detection. So is the imaging systematics corrections, which enhance the lensing signal detection by $\sim 30\%$. We discuss various issues for further improvement of the measurements.
title Weak Lensing Reconstruction by Counting DECaLS Galaxies
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2310.15053