Quantum decoherence and relaxation in long-baseline neutrino data

Abstract We investigate the effect of quantum decoherence and relaxation in neutrino oscillations using MINOS and T2K data. The formalism of open quantum systems is used to describe the interaction of a neutrino system with the environment, where the strength of the interaction is regulated by a dec...

Full description

Bibliographic Details
Published in:Journal of High Energy Physics
Main Authors: A. L. G. Gomes, R. A. Gomes, O. L. G. Peres
Format: Article
Language:English
Published: SpringerOpen 2023-10-01
Subjects:
Online Access:https://doi.org/10.1007/JHEP10(2023)035
_version_ 1849922380511576064
author A. L. G. Gomes
R. A. Gomes
O. L. G. Peres
author_facet A. L. G. Gomes
R. A. Gomes
O. L. G. Peres
author_sort A. L. G. Gomes
collection DOAJ
container_title Journal of High Energy Physics
description Abstract We investigate the effect of quantum decoherence and relaxation in neutrino oscillations using MINOS and T2K data. The formalism of open quantum systems is used to describe the interaction of a neutrino system with the environment, where the strength of the interaction is regulated by a decoherence parameter Γ. We assume an energy dependence parameterized by Γ = γ 0(E/GeV) n , with n = −2, 0, +2, and consider three different scenarios, allowing the investigation of the effect of relaxation and of constraining the solar and atmospheric sectors to the same decoherence parameter. The MINOS and T2K data present a complementary behavior, with regard to our theoretical model, resulting in a better sensitivity for n = +2 and n = −2, respectively. We perform a combined analyses of both experimental data, which also include a reactor constraint on sin2 θ 13, and observe an independence of the results to the scenarios we investigate. Our analyses obtain limits on γ 0 based on long-baseline data for scenarios allowing or not relaxation. We improve some previous bounds on γ 0 and outline which data (solar, reactor, atmospheric, long-baseline) determine the more stringent constraints for different scenarios and energy dependencies.
format Article
id doaj-art-4ffeddc8024a4be69a621740fada520b
institution Directory of Open Access Journals
issn 1029-8479
language English
publishDate 2023-10-01
publisher SpringerOpen
record_format Article
spelling doaj-art-4ffeddc8024a4be69a621740fada520b2025-08-20T00:55:11ZengSpringerOpenJournal of High Energy Physics1029-84792023-10-0120231012810.1007/JHEP10(2023)035Quantum decoherence and relaxation in long-baseline neutrino dataA. L. G. Gomes0R. A. Gomes1O. L. G. Peres2Instituto de Física, Universidade Federal de GoiásInstituto de Física, Universidade Federal de GoiásInstituto de Física Gleb Wataghin, UNICAMPAbstract We investigate the effect of quantum decoherence and relaxation in neutrino oscillations using MINOS and T2K data. The formalism of open quantum systems is used to describe the interaction of a neutrino system with the environment, where the strength of the interaction is regulated by a decoherence parameter Γ. We assume an energy dependence parameterized by Γ = γ 0(E/GeV) n , with n = −2, 0, +2, and consider three different scenarios, allowing the investigation of the effect of relaxation and of constraining the solar and atmospheric sectors to the same decoherence parameter. The MINOS and T2K data present a complementary behavior, with regard to our theoretical model, resulting in a better sensitivity for n = +2 and n = −2, respectively. We perform a combined analyses of both experimental data, which also include a reactor constraint on sin2 θ 13, and observe an independence of the results to the scenarios we investigate. Our analyses obtain limits on γ 0 based on long-baseline data for scenarios allowing or not relaxation. We improve some previous bounds on γ 0 and outline which data (solar, reactor, atmospheric, long-baseline) determine the more stringent constraints for different scenarios and energy dependencies.https://doi.org/10.1007/JHEP10(2023)035Neutrino MixingNon-Standard Neutrino Properties
spellingShingle A. L. G. Gomes
R. A. Gomes
O. L. G. Peres
Quantum decoherence and relaxation in long-baseline neutrino data
Neutrino Mixing
Non-Standard Neutrino Properties
title Quantum decoherence and relaxation in long-baseline neutrino data
title_full Quantum decoherence and relaxation in long-baseline neutrino data
title_fullStr Quantum decoherence and relaxation in long-baseline neutrino data
title_full_unstemmed Quantum decoherence and relaxation in long-baseline neutrino data
title_short Quantum decoherence and relaxation in long-baseline neutrino data
title_sort quantum decoherence and relaxation in long baseline neutrino data
topic Neutrino Mixing
Non-Standard Neutrino Properties
url https://doi.org/10.1007/JHEP10(2023)035
work_keys_str_mv AT alggomes quantumdecoherenceandrelaxationinlongbaselineneutrinodata
AT ragomes quantumdecoherenceandrelaxationinlongbaselineneutrinodata
AT olgperes quantumdecoherenceandrelaxationinlongbaselineneutrinodata