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Inclusive Electron Scattering And The GENIE Neutrino Event Generator

The extraction of neutrino mixing parameters from accelerator-based neutrino oscillation experiments relies on proper modeling of neutrino-nucleus scattering processes using neutrino-interaction event generators. Experimental tests of these generators are difficult due to the broad range of neutrino...

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Detalles Bibliográficos
Autores principales: Papadopoulou, A., Ashkenazi, A., Gardiner, S., Betancourt, M., Dytman, S., Weinstein, L.B., Piasetzky, E., Hauenstein, F., Khachatryan, M., Dolan, S., Megias, G., Hen, O.
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.103.113003
http://cds.cern.ch/record/2741094
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author Papadopoulou, A.
Ashkenazi, A.
Gardiner, S.
Betancourt, M.
Dytman, S.
Weinstein, L.B.
Piasetzky, E.
Hauenstein, F.
Khachatryan, M.
Dolan, S.
Megias, G.
Hen, O.
author_facet Papadopoulou, A.
Ashkenazi, A.
Gardiner, S.
Betancourt, M.
Dytman, S.
Weinstein, L.B.
Piasetzky, E.
Hauenstein, F.
Khachatryan, M.
Dolan, S.
Megias, G.
Hen, O.
author_sort Papadopoulou, A.
collection CERN
description The extraction of neutrino mixing parameters from accelerator-based neutrino oscillation experiments relies on proper modeling of neutrino-nucleus scattering processes using neutrino-interaction event generators. Experimental tests of these generators are difficult due to the broad range of neutrino energies produced in accelerator-based beams and the low statistics of current experiments. Here we overcome these difficulties by exploiting the similarity of neutrino and electron interactions with nuclei to test neutrino event generators using high-precision inclusive electron scattering data. To this end, we revised the electron-scattering mode of the GENIE event generator ($e$-GENIE) to include electron-nucleus bremsstrahlung radiation effects and to use, when relevant, the exact same physics models and model parameters, as the standard neutrino-scattering version. We also implemented new models for quasielastic (QE) scattering and meson exchange currents (MEC) based on the theory-inspired SuSAv2 approach. Comparing the new $e$-GENIE predictions with inclusive electron scattering data, we find an overall adequate description of the data in the QE- and MEC-dominated lower energy transfer regime, especially when using the SuSAv2 models. Higher energy transfer-interactions, which are dominated by resonance production, are still not well modeled by $e$-GENIE.
id cern-2741094
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27410942022-08-17T13:58:50Zdoi:10.1103/PhysRevD.103.113003http://cds.cern.ch/record/2741094engPapadopoulou, A.Ashkenazi, A.Gardiner, S.Betancourt, M.Dytman, S.Weinstein, L.B.Piasetzky, E.Hauenstein, F.Khachatryan, M.Dolan, S.Megias, G.Hen, O.Inclusive Electron Scattering And The GENIE Neutrino Event Generatornucl-exNuclear Physics - Experimenthep-phParticle Physics - Phenomenologyhep-exParticle Physics - Experimentnucl-thNuclear Physics - TheoryThe extraction of neutrino mixing parameters from accelerator-based neutrino oscillation experiments relies on proper modeling of neutrino-nucleus scattering processes using neutrino-interaction event generators. Experimental tests of these generators are difficult due to the broad range of neutrino energies produced in accelerator-based beams and the low statistics of current experiments. Here we overcome these difficulties by exploiting the similarity of neutrino and electron interactions with nuclei to test neutrino event generators using high-precision inclusive electron scattering data. To this end, we revised the electron-scattering mode of the GENIE event generator ($e$-GENIE) to include electron-nucleus bremsstrahlung radiation effects and to use, when relevant, the exact same physics models and model parameters, as the standard neutrino-scattering version. We also implemented new models for quasielastic (QE) scattering and meson exchange currents (MEC) based on the theory-inspired SuSAv2 approach. Comparing the new $e$-GENIE predictions with inclusive electron scattering data, we find an overall adequate description of the data in the QE- and MEC-dominated lower energy transfer regime, especially when using the SuSAv2 models. Higher energy transfer-interactions, which are dominated by resonance production, are still not well modeled by $e$-GENIE.arXiv:2009.07228FERMILAB-PUB-20-484-ND-SCDoai:cds.cern.ch:27410942020-09-15
spellingShingle nucl-ex
Nuclear Physics - Experiment
hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
nucl-th
Nuclear Physics - Theory
Papadopoulou, A.
Ashkenazi, A.
Gardiner, S.
Betancourt, M.
Dytman, S.
Weinstein, L.B.
Piasetzky, E.
Hauenstein, F.
Khachatryan, M.
Dolan, S.
Megias, G.
Hen, O.
Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title_full Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title_fullStr Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title_full_unstemmed Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title_short Inclusive Electron Scattering And The GENIE Neutrino Event Generator
title_sort inclusive electron scattering and the genie neutrino event generator
topic nucl-ex
Nuclear Physics - Experiment
hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
nucl-th
Nuclear Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.103.113003
http://cds.cern.ch/record/2741094
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