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Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$

Recent neutrino data have been favourable to a nearly bimaximal mixing, which suggests a simple form of the neutrino mass matrix. Stimulated by this matrix form, a possibility that all the mass matrices of quarks and leptons have the same form as in the neutrinos is investigated. The mass matrix for...

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Detalles Bibliográficos
Autores principales: Koide, Yoshio, Nishiura, Hiroyuki, Matsuda, Koichi, Kikuchi, Tatsuru, Fukuyama, Takeshi
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.66.093006
http://cds.cern.ch/record/583351
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author Koide, Yoshio
Nishiura, Hiroyuki
Matsuda, Koichi
Kikuchi, Tatsuru
Fukuyama, Takeshi
author_facet Koide, Yoshio
Nishiura, Hiroyuki
Matsuda, Koichi
Kikuchi, Tatsuru
Fukuyama, Takeshi
author_sort Koide, Yoshio
collection CERN
description Recent neutrino data have been favourable to a nearly bimaximal mixing, which suggests a simple form of the neutrino mass matrix. Stimulated by this matrix form, a possibility that all the mass matrices of quarks and leptons have the same form as in the neutrinos is investigated. The mass matrix form is constrained by a discrete symmetry Z_3 and a permutation symmetry S_2. The model, of course, leads to a nearly bimaximal mixing for the lepton sectors, while, for the quark sectors, it can lead to reasonable values of the CKM mixing matrix and masses.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-5833512023-03-12T06:01:42Zdoi:10.1103/PhysRevD.66.093006http://cds.cern.ch/record/583351engKoide, YoshioNishiura, HiroyukiMatsuda, KoichiKikuchi, TatsuruFukuyama, TakeshiUniversal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$Particle Physics - PhenomenologyRecent neutrino data have been favourable to a nearly bimaximal mixing, which suggests a simple form of the neutrino mass matrix. Stimulated by this matrix form, a possibility that all the mass matrices of quarks and leptons have the same form as in the neutrinos is investigated. The mass matrix form is constrained by a discrete symmetry Z_3 and a permutation symmetry S_2. The model, of course, leads to a nearly bimaximal mixing for the lepton sectors, while, for the quark sectors, it can lead to reasonable values of the CKM mixing matrix and masses.Recent neutrino data have been favourable to a nearly bimaximal mixing, which suggests a simple form of the neutrino mass matrix. Stimulated by this matrix form, a possibility that all the mass matrices of quarks and leptons have the same form as in the neutrinos is investigated. The mass matrix form is constrained by a discrete symmetry Z_3 and a permutation symmetry S_2. The model, of course, leads to a nearly bimaximal mixing for the lepton sectors, while, for the quark sectors, it can lead to reasonable values of the CKM mixing matrix and masses.hep-ph/0209333CERN-TH-2002-251US-02-10CERN-TH-2002-251US-2002-10oai:cds.cern.ch:5833512002-09-27
spellingShingle Particle Physics - Phenomenology
Koide, Yoshio
Nishiura, Hiroyuki
Matsuda, Koichi
Kikuchi, Tatsuru
Fukuyama, Takeshi
Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title_full Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title_fullStr Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title_full_unstemmed Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title_short Universal Texture of Quark and Lepton Mass Matrices and a Discrete Symmetry $Z_3$
title_sort universal texture of quark and lepton mass matrices and a discrete symmetry $z_3$
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.66.093006
http://cds.cern.ch/record/583351
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