The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST

We present TXPipe, a modular, automated and reproducible pipeline for ingesting catalog data and performing all the calculations required to obtain quality-assured two-point measurements of lensing and clustering, and their covariances, with the metadata necessary for parameter estimation. The pipel...

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Opis bibliograficzny
Główni autorzy: Prat, J, Zuntz, J, Chang, C, Tröster, T, Pedersen, E, García-García, C, Phillips-Longley, E, Sanchez, J, Alonso, D, Fang, X, Gawiser, E, Heitmann, K, Ishak, M, Jarvis, M, Kovacs, E, Larsen, P, Mao, Y-Y, Medina Varela, L, Paterno, M, Vitenti, SD, Zhang, Z
Format: Journal article
Język:English
Wydane: Maynooth Academic Publishing 2023
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author Prat, J
Zuntz, J
Chang, C
Tröster, T
Pedersen, E
García-García, C
Phillips-Longley, E
Sanchez, J
Alonso, D
Fang, X
Gawiser, E
Heitmann, K
Ishak, M
Jarvis, M
Kovacs, E
Larsen, P
Mao, Y-Y
Medina Varela, L
Paterno, M
Vitenti, SD
Zhang, Z
author_facet Prat, J
Zuntz, J
Chang, C
Tröster, T
Pedersen, E
García-García, C
Phillips-Longley, E
Sanchez, J
Alonso, D
Fang, X
Gawiser, E
Heitmann, K
Ishak, M
Jarvis, M
Kovacs, E
Larsen, P
Mao, Y-Y
Medina Varela, L
Paterno, M
Vitenti, SD
Zhang, Z
author_sort Prat, J
collection OXFORD
description We present TXPipe, a modular, automated and reproducible pipeline for ingesting catalog data and performing all the calculations required to obtain quality-assured two-point measurements of lensing and clustering, and their covariances, with the metadata necessary for parameter estimation. The pipeline is developed within the Rubin Observatory Legacy Survey of Space and Time (LSST) Dark Energy Science Collaboration (DESC), and designed for cosmology analyses using LSST data. In this paper, we present the pipeline for the so-called 3x2pt analysis – a combination of three two-point functions that measure the auto- and cross-correlation between galaxy density and shapes. We perform the analysis both in real and harmonic space using TXPipe and other LSST-DESC tools. We validate the pipeline using Gaussian simulations and show that it accurately measures data vectors and recovers the input cosmology to the accuracy level required for the first year of LSST data under this simplified scenario. We also apply the pipeline to a realistic mock galaxy sample extracted from the CosmoDC2 simulation suite (Korytov et al. 2019). TXPipe establishes a baseline framework that can be built upon as the LSST survey proceeds. Furthermore, the pipeline is designed to be easily extended to science probes beyond the 3x2pt analysis.
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spelling oxford-uuid:d9602dfa-8c3c-4f30-bfe8-a5352f3f6b0d2024-03-06T15:30:08ZThe catalog-to-cosmology framework for weak lensing and galaxy clustering for LSSTJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d9602dfa-8c3c-4f30-bfe8-a5352f3f6b0dEnglishSymplectic ElementsMaynooth Academic Publishing2023Prat, JZuntz, JChang, CTröster, TPedersen, EGarcía-García, CPhillips-Longley, ESanchez, JAlonso, DFang, XGawiser, EHeitmann, KIshak, MJarvis, MKovacs, ELarsen, PMao, Y-YMedina Varela, LPaterno, MVitenti, SDZhang, ZWe present TXPipe, a modular, automated and reproducible pipeline for ingesting catalog data and performing all the calculations required to obtain quality-assured two-point measurements of lensing and clustering, and their covariances, with the metadata necessary for parameter estimation. The pipeline is developed within the Rubin Observatory Legacy Survey of Space and Time (LSST) Dark Energy Science Collaboration (DESC), and designed for cosmology analyses using LSST data. In this paper, we present the pipeline for the so-called 3x2pt analysis – a combination of three two-point functions that measure the auto- and cross-correlation between galaxy density and shapes. We perform the analysis both in real and harmonic space using TXPipe and other LSST-DESC tools. We validate the pipeline using Gaussian simulations and show that it accurately measures data vectors and recovers the input cosmology to the accuracy level required for the first year of LSST data under this simplified scenario. We also apply the pipeline to a realistic mock galaxy sample extracted from the CosmoDC2 simulation suite (Korytov et al. 2019). TXPipe establishes a baseline framework that can be built upon as the LSST survey proceeds. Furthermore, the pipeline is designed to be easily extended to science probes beyond the 3x2pt analysis.
spellingShingle Prat, J
Zuntz, J
Chang, C
Tröster, T
Pedersen, E
García-García, C
Phillips-Longley, E
Sanchez, J
Alonso, D
Fang, X
Gawiser, E
Heitmann, K
Ishak, M
Jarvis, M
Kovacs, E
Larsen, P
Mao, Y-Y
Medina Varela, L
Paterno, M
Vitenti, SD
Zhang, Z
The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title_full The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title_fullStr The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title_full_unstemmed The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title_short The catalog-to-cosmology framework for weak lensing and galaxy clustering for LSST
title_sort catalog to cosmology framework for weak lensing and galaxy clustering for lsst
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