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      Suppressing Flavor Anarchy

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          Abstract

          We present a new mechanism, which does not require any flavor symmetry, to explain the small Yukawa couplings and CKM mixing angles. The Yukawa matrices are assumed to be random at short distances and the hierarchical structure is generated in the infrared by renormalization group flow. The generic qualitative predictions of this mechanism are in good agreement with observation. We give several simple examples in supersymmetric theories. We show that our mechanism can also ameliorate the supersymmetric flavor problem, and make predictions for the superpartner mass spectrum. The mechanism is fully consistent with grand unification, and in SU(5)-based models of neutrino mass, predicts a large mixing angle for muon neutrino to tau neutrino oscillations.

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          Most cited references33

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          Hierarchy of quark masses, cabibbo angles and CP violation

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            Dynamics of spontaneous symmetry breaking in the Weinberg-Salam theory

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              Implications of dynamical symmetry breaking: An addendum

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                Author and article information

                Journal
                21 June 2000
                2000-08-08
                Article
                10.1088/1126-6708/2000/09/030
                hep-ph/0006251
                073659dc-bb9f-4a85-8311-b315d43dd926
                History
                Custom metadata
                UW/PT-00/01, IASSNS--HEP--00/46
                JHEP 0009 (2000) 030
                31 pages, 1 figure, minor change
                hep-ph hep-th

                High energy & Particle physics
                High energy & Particle physics

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