Cargando…

Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses

A substantial fraction of systematic uncertainties in neutrino oscillation experiments stem from the lack of precision in modeling the nuclear target in neutrino-nucleus interactions. Whilst this has driven significant progress in the development of improved nuclear models for neutrino scattering, i...

Descripción completa

Detalles Bibliográficos
Autores principales: Chakrani, J., Dolan, S., Buizza Avanzini, M., Ershova, A., Koch, L., McFarland, K., Megias, G.D., Munteanu, L., Pickering, L., Skwarczynski, K., Nguyen, V.Q., Wret, C.
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2867945
_version_ 1780978187804606464
author Chakrani, J.
Dolan, S.
Buizza Avanzini, M.
Ershova, A.
Koch, L.
McFarland, K.
Megias, G.D.
Munteanu, L.
Pickering, L.
Skwarczynski, K.
Nguyen, V.Q.
Wret, C.
author_facet Chakrani, J.
Dolan, S.
Buizza Avanzini, M.
Ershova, A.
Koch, L.
McFarland, K.
Megias, G.D.
Munteanu, L.
Pickering, L.
Skwarczynski, K.
Nguyen, V.Q.
Wret, C.
author_sort Chakrani, J.
collection CERN
description A substantial fraction of systematic uncertainties in neutrino oscillation experiments stem from the lack of precision in modeling the nuclear target in neutrino-nucleus interactions. Whilst this has driven significant progress in the development of improved nuclear models for neutrino scattering, it is crucial that the models used in neutrino data analyses be accompanied by parameters and associated uncertainties that allow the coverage of plausible nuclear physics. Based on constraints from electron scattering data, we develop such a set of parameters, which can be applied to nuclear shell models, and test their application to the Benhar et al spectral function model. The parametrization is validated through a series of maximum likelihood fits to cross-section measurements made by the T2K and MINERvA experiments, which also permit an exploration of the power of near-detector data to provide constraints on the parameters in neutrino oscillation analyses.
id cern-2867945
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28679452023-10-25T02:30:54Zhttp://cds.cern.ch/record/2867945engChakrani, J.Dolan, S.Buizza Avanzini, M.Ershova, A.Koch, L.McFarland, K.Megias, G.D.Munteanu, L.Pickering, L.Skwarczynski, K.Nguyen, V.Q.Wret, C.Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyseshep-phParticle Physics - Phenomenologyhep-exParticle Physics - ExperimentA substantial fraction of systematic uncertainties in neutrino oscillation experiments stem from the lack of precision in modeling the nuclear target in neutrino-nucleus interactions. Whilst this has driven significant progress in the development of improved nuclear models for neutrino scattering, it is crucial that the models used in neutrino data analyses be accompanied by parameters and associated uncertainties that allow the coverage of plausible nuclear physics. Based on constraints from electron scattering data, we develop such a set of parameters, which can be applied to nuclear shell models, and test their application to the Benhar et al spectral function model. The parametrization is validated through a series of maximum likelihood fits to cross-section measurements made by the T2K and MINERvA experiments, which also permit an exploration of the power of near-detector data to provide constraints on the parameters in neutrino oscillation analyses.arXiv:2308.01838oai:cds.cern.ch:28679452023-08-03
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
Chakrani, J.
Dolan, S.
Buizza Avanzini, M.
Ershova, A.
Koch, L.
McFarland, K.
Megias, G.D.
Munteanu, L.
Pickering, L.
Skwarczynski, K.
Nguyen, V.Q.
Wret, C.
Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title_full Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title_fullStr Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title_full_unstemmed Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title_short Parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
title_sort parametrized uncertainties in the spectral function model of neutrino charged-current quasielastic interactions for oscillation analyses
topic hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
url http://cds.cern.ch/record/2867945
work_keys_str_mv AT chakranij parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT dolans parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT buizzaavanzinim parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT ershovaa parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT kochl parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT mcfarlandk parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT megiasgd parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT munteanul parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT pickeringl parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT skwarczynskik parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT nguyenvq parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses
AT wretc parametrizeduncertaintiesinthespectralfunctionmodelofneutrinochargedcurrentquasielasticinteractionsforoscillationanalyses