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Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay

We develop techniques for the analysis of SO(2N) invariant couplings which allow a full exhibition of the SU(N) invariant content of the spinor and tensor representations. The technique utilizes a basis consisting of a specific set of reducible SU(N) tensors in terms of which the SO(2N) invariant co...

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Detalles Bibliográficos
Autores principales: Nath, Pran, Syed, Raza M.
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(01)00392-6
https://dx.doi.org/10.1016/S0370-2693(01)00508-1
http://cds.cern.ch/record/491441
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author Nath, Pran
Syed, Raza M.
author_facet Nath, Pran
Syed, Raza M.
author_sort Nath, Pran
collection CERN
description We develop techniques for the analysis of SO(2N) invariant couplings which allow a full exhibition of the SU(N) invariant content of the spinor and tensor representations. The technique utilizes a basis consisting of a specific set of reducible SU(N) tensors in terms of which the SO(2N) invariant couplings have a simple expansion. The technique is specially useful for couplings involving large tensor representations. We exhibit the technique by performing a complete determination of the trilinear couplings in the superpotential for the case of SO(10) involving the 16 plet of matter, i.e., we give a full determination of the ${16-16-10_s}$, ${16-16-120_a}$ and ${16-16-\bar{126}_s}$ couplings. The possible role of large tensor representations in the generation of quark lepton textures is discussed. It is shown that the couplings involving $\bar{126}$ dimensional representation generate extra zeros in the Higgs triplet textures which can lead to an enhancement of the proton decay lifetime by a factor of $10^3$. These results also have implications for neutrino mass textures.
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language eng
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spelling cern-4914412023-03-12T05:47:38Zdoi:10.1016/S0370-2693(01)00392-6doi:10.1016/S0370-2693(01)00508-1http://cds.cern.ch/record/491441engNath, PranSyed, Raza M.Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton DecayParticle Physics - PhenomenologyWe develop techniques for the analysis of SO(2N) invariant couplings which allow a full exhibition of the SU(N) invariant content of the spinor and tensor representations. The technique utilizes a basis consisting of a specific set of reducible SU(N) tensors in terms of which the SO(2N) invariant couplings have a simple expansion. The technique is specially useful for couplings involving large tensor representations. We exhibit the technique by performing a complete determination of the trilinear couplings in the superpotential for the case of SO(10) involving the 16 plet of matter, i.e., we give a full determination of the ${16-16-10_s}$, ${16-16-120_a}$ and ${16-16-\bar{126}_s}$ couplings. The possible role of large tensor representations in the generation of quark lepton textures is discussed. It is shown that the couplings involving $\bar{126}$ dimensional representation generate extra zeros in the Higgs triplet textures which can lead to an enhancement of the proton decay lifetime by a factor of $10^3$. These results also have implications for neutrino mass textures.We develop techniques for the analysis of SO(2N) invariant couplings which allow a full exhibition of the SU(N) invariant content of the spinor and tensor representations. The technique utilizes a basis consisting of a specific set of reducible SU(N) tensors in terms of which the SO(2N) invariant couplings have a simple expansion. The technique is specially useful for couplings involving large tensor representations. We exhibit the technique by performing a complete determination of the trilinear couplings in the superpotential for the case of SO(10) involving the 16 plet of matter, i.e., we give a full determination of the ${16-16-10_s}$, ${16-16-120_a}$ and ${16-16-\bar{126}_s}$ couplings. The possible role of large tensor representations in the generation of quark lepton textures is discussed. It is shown that the couplings involving $\bar{126}$ dimensional representation generate extra zeros in the Higgs triplet textures which can lead to an enhancement of the proton decay lifetime by a factor of $10^3$. These results also have implications for neutrino mass textures.hep-ph/0103165CERN-TH-2001-047oai:cds.cern.ch:4914412001-03-14
spellingShingle Particle Physics - Phenomenology
Nath, Pran
Syed, Raza M.
Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title_full Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title_fullStr Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title_full_unstemmed Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title_short Analysis of Couplings with Large Tensor Representations in SO(2N) and Proton Decay
title_sort analysis of couplings with large tensor representations in so(2n) and proton decay
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0370-2693(01)00392-6
https://dx.doi.org/10.1016/S0370-2693(01)00508-1
http://cds.cern.ch/record/491441
work_keys_str_mv AT nathpran analysisofcouplingswithlargetensorrepresentationsinso2nandprotondecay
AT syedrazam analysisofcouplingswithlargetensorrepresentationsinso2nandprotondecay