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      Fermion masses in SO(10) with a single adjoint Higgs field

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          Abstract

          It has recently been shown how to break SO(10) down to the Standard Model in a realistic way with only one adjoint Higgs. The expectation value of this adjoint must point in the B-L direction. This has consequences for the possible form of the quark and lepton mass matrices. These consequences are explored in this paper, and it is found that one is naturally led to consider a particular form for the masses of the heavier generations. This form implies typically that there should be large (nearly maximal) mixing of the mu- and tau-neutrinos. An explanation that does not involve large tan beta also emerges for the fact that b and tau are light compared to the top quark.

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          Most cited references27

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          Cosmological baryon and lepton number in the presence of electroweak fermion-number violation

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            A new lepton-quark mass relation in a unified theory

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              Origin of matter in the inflationary cosmology

                Author and article information

                Journal
                22 December 1997
                1998-01-09
                Article
                10.1103/PhysRevD.58.013002
                hep-ph/9712488
                32ff4d55-6412-4a55-b917-94b123211df5
                History
                Custom metadata
                BA-97-53, FERMILAB-PUB-97/382-T
                Phys.Rev.D58:013002,1998
                20 pages, LaTeX, clarification of statements about multiple adjoint Higgs fields in the context of superstring theory
                hep-ph

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