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The prospects for CHORUS and NOMAD in the light of COBE and GALLEX

The most natural MSW neutrino oscillation interpretation of the GALLEX and other solar neutrino data, which invokes $m_{\nu_\mu}\sim3\times10^{-3}\eV$, and a general GUT see-saw hierarchy of neutrino masses, $m_{\nu_{e,\mu,\tau}}\sim (m_{u,c,t})^2/M_U$, suggest that $m_{\nu_\tau}\sim10\eV$ in agreem...

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Detalles Bibliográficos
Autores principales: Ellis, John R., Lopez, Jorge L., Nanopoulos, Dimitri V.
Lenguaje:eng
Publicado: 1992
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0370-2693(92)90629-I
http://cds.cern.ch/record/557498
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author Ellis, John R.
Lopez, Jorge L.
Nanopoulos, Dimitri V.
author_facet Ellis, John R.
Lopez, Jorge L.
Nanopoulos, Dimitri V.
author_sort Ellis, John R.
collection CERN
description The most natural MSW neutrino oscillation interpretation of the GALLEX and other solar neutrino data, which invokes $m_{\nu_\mu}\sim3\times10^{-3}\eV$, and a general GUT see-saw hierarchy of neutrino masses, $m_{\nu_{e,\mu,\tau}}\sim (m_{u,c,t})^2/M_U$, suggest that $m_{\nu_\tau}\sim10\eV$ in agreement with the preference of COBE and other data on large-scale structure in the Universe for a hot component in the Dark Matter. The general see-saw model also suggests that neutrino mixing angles are related to quark mixing angles, which is also consistent with the oscillation interpretation of the solar neutrino data, and suggests that the forthcoming CHORUS and NOMAD experiments at CERN have a good chance of observing $\nu_\mu - \nu_\tau$ oscillations. We present a minimal realization of the general see-saw hierarchy in the context of flipped $SU(5)$.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1992
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spelling cern-5574982020-07-23T02:45:22Zdoi:10.1016/0370-2693(92)90629-Ihttp://cds.cern.ch/record/557498engEllis, John R.Lopez, Jorge L.Nanopoulos, Dimitri V.The prospects for CHORUS and NOMAD in the light of COBE and GALLEXParticle Physics - PhenomenologyThe most natural MSW neutrino oscillation interpretation of the GALLEX and other solar neutrino data, which invokes $m_{\nu_\mu}\sim3\times10^{-3}\eV$, and a general GUT see-saw hierarchy of neutrino masses, $m_{\nu_{e,\mu,\tau}}\sim (m_{u,c,t})^2/M_U$, suggest that $m_{\nu_\tau}\sim10\eV$ in agreement with the preference of COBE and other data on large-scale structure in the Universe for a hot component in the Dark Matter. The general see-saw model also suggests that neutrino mixing angles are related to quark mixing angles, which is also consistent with the oscillation interpretation of the solar neutrino data, and suggests that the forthcoming CHORUS and NOMAD experiments at CERN have a good chance of observing $\nu_\mu - \nu_\tau$ oscillations. We present a minimal realization of the general see-saw hierarchy in the context of flipped $SU(5)$.The most natural MSW neutrino oscillation interpretation of the GALLEX and other solar neutrino data, which invokes $m_{\nu_\mu}\sim3\times10~{-3}\eV$, and a general GUT see-saw hierarchy of neutrino masses, $m_{\nu_{e,\mu,\tau}}\sim (m_{u,c,t})~2/M_U$, suggest that $m_{\nu_\tau}\sim10\eV$ in agreement with the preference of COBE and other data on large-scale structure in the Universe for a hot component in the Dark Matter. The general see-saw model also suggests that neutrino mixing angles are related to quark mixing angles, which is also consistent with the oscillation interpretation of the solar neutrino data, and suggests that the forthcoming CHORUS and NOMAD experiments at CERN have a good chance of observing $\nu_\mu - \nu_\tau$ oscillations. We present a minimal realization of the general see-saw hierarchy in the context of flipped $SU(5)$.The most natural MSW neutrino oscillation interpretation of the GALLEX and other solar neutrino data, which invokes m ν μ ∼3×10 −3 eV, and a general GUT see-saw hierarchy of neutrino masses, m ν e , μ , τ ∼( m u , c , t ) 2 / M U , suggest that m ν τ ∼10 eV in agreement with the preference of COBE and other data on large-scale structure in the Universe for a hot component in the dark matter. The general see-saw model also suggests that neutrino mixing angles are related to quark mixing angles, which is also consistent with the oscillation interpretation of the solar neutrino data, and suggests that the forthcoming CHORUS and NOMAD experiments at CERN have a good chance of observing ν μ - ν τ oscillations. We present a minimal realization of the general see-saw hierarchy in the context of flipped SU(5).hep-ph/9207237CTP-TAMU-53-92ACT-15-92CERN-TH-6569-92ACT-1992-15CERN-TH-6569-92CTP-TAMU-92-53oai:cds.cern.ch:5574981992
spellingShingle Particle Physics - Phenomenology
Ellis, John R.
Lopez, Jorge L.
Nanopoulos, Dimitri V.
The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title_full The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title_fullStr The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title_full_unstemmed The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title_short The prospects for CHORUS and NOMAD in the light of COBE and GALLEX
title_sort prospects for chorus and nomad in the light of cobe and gallex
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/0370-2693(92)90629-I
http://cds.cern.ch/record/557498
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