Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics

Experiments in neutrino physics cover a wide range—from deep inelastic scattering, over long base-line oscillation experiments and low-energy coherent neutrino–nucleus scattering (CEνNS), to searches for neutrinoless double β decay (0νββ)—yet in all cases a key aspect in interpreting the results con...

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Main Author: Hoferichter Martin
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2022/18/epjconf_confxv2022_01010.pdf
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author Hoferichter Martin
author_facet Hoferichter Martin
author_sort Hoferichter Martin
collection DOAJ
description Experiments in neutrino physics cover a wide range—from deep inelastic scattering, over long base-line oscillation experiments and low-energy coherent neutrino–nucleus scattering (CEνNS), to searches for neutrinoless double β decay (0νββ)—yet in all cases a key aspect in interpreting the results concerns understanding neutrino–nucleus interactions. If the neutrino energy is sufficiently low, the required matrix elements can be constrained in a systematic way by the interplay of effective field theories, phenomenology, and lattice QCD. In these proceedings, we illustrate this strategy focusing on the CEνNS and 0νββ processes.
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spelling doaj.art-ba9335bba98343e28662cc16578f2d152023-01-17T09:14:36ZengEDP SciencesEPJ Web of Conferences2100-014X2022-01-012740101010.1051/epjconf/202227401010epjconf_confxv2022_01010Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physicsHoferichter Martin0Albert Einstein Center for Fundamental Physics, Institute for Theoretical Physics, University of BernExperiments in neutrino physics cover a wide range—from deep inelastic scattering, over long base-line oscillation experiments and low-energy coherent neutrino–nucleus scattering (CEνNS), to searches for neutrinoless double β decay (0νββ)—yet in all cases a key aspect in interpreting the results concerns understanding neutrino–nucleus interactions. If the neutrino energy is sufficiently low, the required matrix elements can be constrained in a systematic way by the interplay of effective field theories, phenomenology, and lattice QCD. In these proceedings, we illustrate this strategy focusing on the CEνNS and 0νββ processes.https://www.epj-conferences.org/articles/epjconf/pdf/2022/18/epjconf_confxv2022_01010.pdf
spellingShingle Hoferichter Martin
Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
EPJ Web of Conferences
title Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
title_full Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
title_fullStr Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
title_full_unstemmed Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
title_short Interplay of nuclear physics, effective field theories, phenomenology, and lattice QCD in neutrino physics
title_sort interplay of nuclear physics effective field theories phenomenology and lattice qcd in neutrino physics
url https://www.epj-conferences.org/articles/epjconf/pdf/2022/18/epjconf_confxv2022_01010.pdf
work_keys_str_mv AT hoferichtermartin interplayofnuclearphysicseffectivefieldtheoriesphenomenologyandlatticeqcdinneutrinophysics