Cargando…

Investigating the reach of FPF via information geometry using multidifferential neutrino spectra

<!--HTML-->Based on a broad selection of existing predictions to cover the phase space as well as possible, we investigate the highest achievable precision for the neutrino spectra expected at the FPF. The spectra are presented as a function of neutrino energy and the spatial radius of the int...

Descripción completa

Detalles Bibliográficos
Autor principal: Makela, Toni
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2876168
_version_ 1780978934594142208
author Makela, Toni
author_facet Makela, Toni
author_sort Makela, Toni
collection CERN
description <!--HTML-->Based on a broad selection of existing predictions to cover the phase space as well as possible, we investigate the highest achievable precision for the neutrino spectra expected at the FPF. The spectra are presented as a function of neutrino energy and the spatial radius of the interaction vertex, separately for each outgoing charged lepton flavor, thus demonstrating the increase in precision due to the use of multidifferential distributions. This allows assessing the ultimate experimental reach of the FPF, and as particular examples we investigate the constraints that can be set on neutrino charged current non-standard interactions and enhanced forward kaon production.
id cern-2876168
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28761682023-10-19T19:57:03Zhttp://cds.cern.ch/record/2876168engMakela, ToniInvestigating the reach of FPF via information geometry using multidifferential neutrino spectraForward Physics Facility Theory WorkshopConferences, Workshops & Schools<!--HTML-->Based on a broad selection of existing predictions to cover the phase space as well as possible, we investigate the highest achievable precision for the neutrino spectra expected at the FPF. The spectra are presented as a function of neutrino energy and the spatial radius of the interaction vertex, separately for each outgoing charged lepton flavor, thus demonstrating the increase in precision due to the use of multidifferential distributions. This allows assessing the ultimate experimental reach of the FPF, and as particular examples we investigate the constraints that can be set on neutrino charged current non-standard interactions and enhanced forward kaon production.oai:cds.cern.ch:28761682023
spellingShingle Conferences, Workshops & Schools
Makela, Toni
Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title_full Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title_fullStr Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title_full_unstemmed Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title_short Investigating the reach of FPF via information geometry using multidifferential neutrino spectra
title_sort investigating the reach of fpf via information geometry using multidifferential neutrino spectra
topic Conferences, Workshops & Schools
url http://cds.cern.ch/record/2876168
work_keys_str_mv AT makelatoni investigatingthereachoffpfviainformationgeometryusingmultidifferentialneutrinospectra
AT makelatoni forwardphysicsfacilitytheoryworkshop