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Modelling of Astrophysical Systematics for Cosmology with LSST

<!--HTML-->LSST will provide an unprecedented wealth of astronomical data, with which we will be able to tightly constrain the values of the cosmological parameters, notably those which describe the poorly understood dark energy component. As weak lensing and galaxy clustering measurements pro...

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Detalles Bibliográficos
Autor principal: Šarčević, Nikolina
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2860689
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author Šarčević, Nikolina
author_facet Šarčević, Nikolina
author_sort Šarčević, Nikolina
collection CERN
description <!--HTML-->LSST will provide an unprecedented wealth of astronomical data, with which we will be able to tightly constrain the values of the cosmological parameters, notably those which describe the poorly understood dark energy component. As weak lensing and galaxy clustering measurements provide a way to infer key cosmological quantities such as the dark matter distribution, the evolution of cosmic structure, and the expansion history of the Universe, detailed and rigorous analysis is necessary in order to glean as much information as possible from LSST measurements of these effects. This project developed a consistent and reliable framework (FISK) where three key systematic effects impacting weak lensing and galaxy clustering (intrinsic alignment of galaxies, galaxy bias and photometric redshift uncertainties) are modeled jointly. The results directly enable rigorous weak lensing and galaxy clustering constraints on cosmological parameters with LSST.
id cern-2860689
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28606892023-06-02T21:37:31Zhttp://cds.cern.ch/record/2860689engŠarčević, NikolinaModelling of Astrophysical Systematics for Cosmology with LSSTThird EuCAPT Annual SymposiumEucapt Conferences<!--HTML-->LSST will provide an unprecedented wealth of astronomical data, with which we will be able to tightly constrain the values of the cosmological parameters, notably those which describe the poorly understood dark energy component. As weak lensing and galaxy clustering measurements provide a way to infer key cosmological quantities such as the dark matter distribution, the evolution of cosmic structure, and the expansion history of the Universe, detailed and rigorous analysis is necessary in order to glean as much information as possible from LSST measurements of these effects. This project developed a consistent and reliable framework (FISK) where three key systematic effects impacting weak lensing and galaxy clustering (intrinsic alignment of galaxies, galaxy bias and photometric redshift uncertainties) are modeled jointly. The results directly enable rigorous weak lensing and galaxy clustering constraints on cosmological parameters with LSST.oai:cds.cern.ch:28606892023
spellingShingle Eucapt Conferences
Šarčević, Nikolina
Modelling of Astrophysical Systematics for Cosmology with LSST
title Modelling of Astrophysical Systematics for Cosmology with LSST
title_full Modelling of Astrophysical Systematics for Cosmology with LSST
title_fullStr Modelling of Astrophysical Systematics for Cosmology with LSST
title_full_unstemmed Modelling of Astrophysical Systematics for Cosmology with LSST
title_short Modelling of Astrophysical Systematics for Cosmology with LSST
title_sort modelling of astrophysical systematics for cosmology with lsst
topic Eucapt Conferences
url http://cds.cern.ch/record/2860689
work_keys_str_mv AT sarcevicnikolina modellingofastrophysicalsystematicsforcosmologywithlsst
AT sarcevicnikolina thirdeucaptannualsymposium