Impact of projection-induced optical selection bias on the weak lensing mass calibration of galaxy clusters

Fuente: arXiv
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Main Authors: Nde, Titus Nyarko, Wu, Hao-Yi, Cao, Shulei, Kamau, Gladys Muthoni, Tamosiunas, Andrius, To, Chun-Hao, Zhou, Conghao
Format: Preprint
Published: 2025
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_version_ 1866914460078178304
author Nde, Titus Nyarko
Wu, Hao-Yi
Cao, Shulei
Kamau, Gladys Muthoni
Tamosiunas, Andrius
To, Chun-Hao
Zhou, Conghao
author_facet Nde, Titus Nyarko
Wu, Hao-Yi
Cao, Shulei
Kamau, Gladys Muthoni
Tamosiunas, Andrius
To, Chun-Hao
Zhou, Conghao
contents Weak gravitational lensing signals of optically identified clusters are impacted by a selection bias -- halo triaxiality and large-scale structure along the line of sight simultaneously boost the lensing signal and richness (the inferred number of galaxies associated with a cluster). As a result, a cluster sample selected by richness has a mean lensing signal higher than expected from its mean mass, and the inferred mass will be biased high. This selection bias is currently limiting the accuracy of cosmological parameters derived from optical clusters. In this paper, we quantify the bias in mass calibration due to this selection bias. Using two simulations, MiniUchuu and Cardinal, with different galaxy models and cluster finders, we find that the selection bias leads to an overestimation of lensing mass at the 20-50% level, with a larger bias (20-80%) for large-scale lensing (>3 Mpc). Even with a moderate projection model, this selection bias significantly outweighs other currently known cluster lensing systematics. This work confirms the need to account for this bias in future optical cluster cosmology analyses, and we discuss strategies for mitigating this bias.
format Preprint
id arxiv_https___arxiv_org_abs_2510_00753
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Impact of projection-induced optical selection bias on the weak lensing mass calibration of galaxy clusters
Nde, Titus Nyarko
Wu, Hao-Yi
Cao, Shulei
Kamau, Gladys Muthoni
Tamosiunas, Andrius
To, Chun-Hao
Zhou, Conghao
Cosmology and Nongalactic Astrophysics
Weak gravitational lensing signals of optically identified clusters are impacted by a selection bias -- halo triaxiality and large-scale structure along the line of sight simultaneously boost the lensing signal and richness (the inferred number of galaxies associated with a cluster). As a result, a cluster sample selected by richness has a mean lensing signal higher than expected from its mean mass, and the inferred mass will be biased high. This selection bias is currently limiting the accuracy of cosmological parameters derived from optical clusters. In this paper, we quantify the bias in mass calibration due to this selection bias. Using two simulations, MiniUchuu and Cardinal, with different galaxy models and cluster finders, we find that the selection bias leads to an overestimation of lensing mass at the 20-50% level, with a larger bias (20-80%) for large-scale lensing (>3 Mpc). Even with a moderate projection model, this selection bias significantly outweighs other currently known cluster lensing systematics. This work confirms the need to account for this bias in future optical cluster cosmology analyses, and we discuss strategies for mitigating this bias.
title Impact of projection-induced optical selection bias on the weak lensing mass calibration of galaxy clusters
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2510.00753