Analysis of biasing from noise from the Nancy Grace Roman Space Telescope: implications for weak lensing

Fuente: arXiv
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Main Authors: Laliotis, Katherine, Macbeth, Emily, Hirata, Christopher M., Cao, Kaili, Yamamoto, Masaya, Troxel, Michael
Format: Preprint
Published: 2024
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author Laliotis, Katherine
Macbeth, Emily
Hirata, Christopher M.
Cao, Kaili
Yamamoto, Masaya
Troxel, Michael
author_facet Laliotis, Katherine
Macbeth, Emily
Hirata, Christopher M.
Cao, Kaili
Yamamoto, Masaya
Troxel, Michael
contents The Nancy Grace Roman Space Telescope, set to launch in 2026, will bring unprecedented precision to measurements of weak gravitational lensing. Because weak lensing is an inherently small signal, it is imperative to minimize systematic errors in measurements as completely as possible; this will ensure that the lensing measurements can be used to their full potential when extracting cosmological information. In this paper, we use laboratory tests of the Roman detectors, simulations of the Roman High Latitude Survey observations, and the proposed Roman image combination pipeline to investigate the magnitude of detector read noise biasing on weak lensing measurements from Roman. First, we combine lab-measured detector noise fields with simulated observations and propagate these images through the Roman image combination pipeline, IMCOM. We characterize the specific signatures of the noise fields in the resultant images and find that noise contributes to the combined images most strongly at scales relevant to physical characteristics of the detector including PSF shape, chip boundaries, and roll angles. We then measure shapes of simulated stars and galaxies and determine the magnitude of noise-induced shear bias on these measurements. We find that star shape correlations satisfy the system noise requirements as defined by the Roman Science Requirements Document. However, for galaxies fainter than $m_{\rm AB}\simeq24$, correction for noise correlations will be needed in order to ensure confidence in shape measurements in any observation band.
format Preprint
id arxiv_https___arxiv_org_abs_2410_11088
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Analysis of biasing from noise from the Nancy Grace Roman Space Telescope: implications for weak lensing
Laliotis, Katherine
Macbeth, Emily
Hirata, Christopher M.
Cao, Kaili
Yamamoto, Masaya
Troxel, Michael
Instrumentation and Methods for Astrophysics
The Nancy Grace Roman Space Telescope, set to launch in 2026, will bring unprecedented precision to measurements of weak gravitational lensing. Because weak lensing is an inherently small signal, it is imperative to minimize systematic errors in measurements as completely as possible; this will ensure that the lensing measurements can be used to their full potential when extracting cosmological information. In this paper, we use laboratory tests of the Roman detectors, simulations of the Roman High Latitude Survey observations, and the proposed Roman image combination pipeline to investigate the magnitude of detector read noise biasing on weak lensing measurements from Roman. First, we combine lab-measured detector noise fields with simulated observations and propagate these images through the Roman image combination pipeline, IMCOM. We characterize the specific signatures of the noise fields in the resultant images and find that noise contributes to the combined images most strongly at scales relevant to physical characteristics of the detector including PSF shape, chip boundaries, and roll angles. We then measure shapes of simulated stars and galaxies and determine the magnitude of noise-induced shear bias on these measurements. We find that star shape correlations satisfy the system noise requirements as defined by the Roman Science Requirements Document. However, for galaxies fainter than $m_{\rm AB}\simeq24$, correction for noise correlations will be needed in order to ensure confidence in shape measurements in any observation band.
title Analysis of biasing from noise from the Nancy Grace Roman Space Telescope: implications for weak lensing
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2410.11088