Visible neutrino decay in the light of appearance and disappearance long-baseline experiments

Abstract We investigate the present constraints from MINOS and T2K experiments for the neutrino decay scenario induced by non-diagonal couplings of Majorons to neutrinos. As novelty, on top of the typical invisible decay prescription, we add the contribution of visible decay, where final products ca...

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Main Authors: Alberto M. Gago, Ricardo A. Gomes, Abner L.G. Gomes, Joel Jones-Pérez, Orlando L.G. Peres
Format: Article
Language:English
Published: SpringerOpen 2017-11-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP11(2017)022
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spelling doaj-a6b813120e774bbb9e9af2bd204b4c8a2020-11-24T22:36:32ZengSpringerOpenJournal of High Energy Physics1029-84792017-11-0120171112910.1007/JHEP11(2017)022Visible neutrino decay in the light of appearance and disappearance long-baseline experimentsAlberto M. Gago0Ricardo A. Gomes1Abner L.G. Gomes2Joel Jones-Pérez3Orlando L.G. Peres4Sección Física, Departamento de Ciencias, Pontificia Universidad Católica del PerúInstituto de Física, Universidade Federal de GoiásInstituto de Física, Universidade Federal de GoiásSección Física, Departamento de Ciencias, Pontificia Universidad Católica del PerúInstituto de Física Gleb Wataghin, UNICAMPAbstract We investigate the present constraints from MINOS and T2K experiments for the neutrino decay scenario induced by non-diagonal couplings of Majorons to neutrinos. As novelty, on top of the typical invisible decay prescription, we add the contribution of visible decay, where final products can be observed. This new effect depends on the nature of the neutrino-Majoron coupling, which can be of scalar or pseudoscalar type. Using the combination of disappearance data from MINOS and disappearance and appearance data from T2K, for normal ordering, we constrain the decay parameter α ≡ E Γ for the heaviest neutrino, where E and Γ are the neutrino energy and width, respectively. We find that when considering visible decay within appearance data, one can improve current neutrino long-baseline constraints up to α<O10−5eV2 $$ \alpha <\mathcal{O}\left(1{0}^{-5}\right)\ {\mathrm{eV}}^2 $$, at 90% C.L., for both kinds of couplings, which is better by one order of magnitude compared to previous bounds.http://link.springer.com/article/10.1007/JHEP11(2017)022Beyond Standard ModelNeutrino Physics
collection DOAJ
language English
format Article
sources DOAJ
author Alberto M. Gago
Ricardo A. Gomes
Abner L.G. Gomes
Joel Jones-Pérez
Orlando L.G. Peres
spellingShingle Alberto M. Gago
Ricardo A. Gomes
Abner L.G. Gomes
Joel Jones-Pérez
Orlando L.G. Peres
Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
Journal of High Energy Physics
Beyond Standard Model
Neutrino Physics
author_facet Alberto M. Gago
Ricardo A. Gomes
Abner L.G. Gomes
Joel Jones-Pérez
Orlando L.G. Peres
author_sort Alberto M. Gago
title Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
title_short Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
title_full Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
title_fullStr Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
title_full_unstemmed Visible neutrino decay in the light of appearance and disappearance long-baseline experiments
title_sort visible neutrino decay in the light of appearance and disappearance long-baseline experiments
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2017-11-01
description Abstract We investigate the present constraints from MINOS and T2K experiments for the neutrino decay scenario induced by non-diagonal couplings of Majorons to neutrinos. As novelty, on top of the typical invisible decay prescription, we add the contribution of visible decay, where final products can be observed. This new effect depends on the nature of the neutrino-Majoron coupling, which can be of scalar or pseudoscalar type. Using the combination of disappearance data from MINOS and disappearance and appearance data from T2K, for normal ordering, we constrain the decay parameter α ≡ E Γ for the heaviest neutrino, where E and Γ are the neutrino energy and width, respectively. We find that when considering visible decay within appearance data, one can improve current neutrino long-baseline constraints up to α<O10−5eV2 $$ \alpha <\mathcal{O}\left(1{0}^{-5}\right)\ {\mathrm{eV}}^2 $$, at 90% C.L., for both kinds of couplings, which is better by one order of magnitude compared to previous bounds.
topic Beyond Standard Model
Neutrino Physics
url http://link.springer.com/article/10.1007/JHEP11(2017)022
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