How to augment cosmic shear measurements with radio polarimetry of galaxies?

Fuente: arXiv
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Hauptverfasser: Dai, Liang, Huang, Junwu, Yin, Weichen Winston, Zhou, Rui, Ferraro, Simone
Format: Preprint
Veröffentlicht: 2026
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author Dai, Liang
Huang, Junwu
Yin, Weichen Winston
Zhou, Rui
Ferraro, Simone
author_facet Dai, Liang
Huang, Junwu
Yin, Weichen Winston
Zhou, Rui
Ferraro, Simone
contents The integral polarization of spiral galaxies in the radio band has been proposed as a new tracer of the intrinsic galaxy shape that augments lensing shear measurements. We revisit the method of shear estimation in this context. We introduce a new statistical model in which galaxy shape and polarization are Gaussian random variables with their covariance characterizing the quality of polarization-shape alignment. Applying the principle of likelihood maximization, we then analytically derive unbiased, minimal-variance estimators, which allow to simultaneously estimate gravitational shear, intrinsic shape alignment and line-of-sight polarization rotation, all at once and accurate to first order in these three effects. New to the literature, our estimators have the merits of being free of biases, robust in situations of few galaxies or poor polarization-shape alignment, allowing analytic reconstruction noise covariance, and minimizing uncertainties in power spectrum estimation, thus resolving conceptual issues of the existing estimation methods. This new analytic framework is generally applicable to future research that exploits the polarization-shape alignment effect of galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2605_08465
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle How to augment cosmic shear measurements with radio polarimetry of galaxies?
Dai, Liang
Huang, Junwu
Yin, Weichen Winston
Zhou, Rui
Ferraro, Simone
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
The integral polarization of spiral galaxies in the radio band has been proposed as a new tracer of the intrinsic galaxy shape that augments lensing shear measurements. We revisit the method of shear estimation in this context. We introduce a new statistical model in which galaxy shape and polarization are Gaussian random variables with their covariance characterizing the quality of polarization-shape alignment. Applying the principle of likelihood maximization, we then analytically derive unbiased, minimal-variance estimators, which allow to simultaneously estimate gravitational shear, intrinsic shape alignment and line-of-sight polarization rotation, all at once and accurate to first order in these three effects. New to the literature, our estimators have the merits of being free of biases, robust in situations of few galaxies or poor polarization-shape alignment, allowing analytic reconstruction noise covariance, and minimizing uncertainties in power spectrum estimation, thus resolving conceptual issues of the existing estimation methods. This new analytic framework is generally applicable to future research that exploits the polarization-shape alignment effect of galaxies.
title How to augment cosmic shear measurements with radio polarimetry of galaxies?
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2605.08465