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      On SUSY inspired minimal lepton number violation

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          Abstract

          A minimal lepton number violation (LNV) is proposed which could naturally appear in SUSY theories, if Yukawa and LNV couplings had a common origin. According to this idea properly implemented into MSSM with an additional abelian flavor symmetry the prototype LNV appears due to a mixing of leptons with superheavy Higgs doublet mediating Yukawa couplings. As a result, all significant physical manifestations of LNV reduce to those of the effective trilinear couplings \(LL\bar{E}\) and \(LQ\bar{D}\) aligned, by size and orientation in a flavor space, with the down fermion (charged lepton and down quark) effective Yukawa couplings, while the effective bilinear terms appear generically suppressed relative to an ordinary \(\mu \)-term of MSSM. Detailed phenomenology of the model related to the flavor-changing processes both in quark and lepton sectors, radiatively induced neutrino masses and decays of the LSP is presented. Remarkably, the model can straightforwardly be extended to a Grand Unified framework and an explicit example with SU(7) GUT is thoroughly discussed.

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          Hierarchy of quark masses, cabibbo angles and CP violation

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            Neutrino Oscillations and R-parity Violating Collider Signals

            R-parity and L violation in the MSSM would be the origin of the neutrino oscillation observed in Super-Kamiokande. A distinctive feature of this framework is that it can be tested in colliders by observing decay products of the destabilized LSP. We examine all the possible decay processes of the neutralino LSP assuming the bilinear contribution to neutrino masses dominates over the trilinear one which gives rise to the solar neutrino mass. We find that it is possible to probe neutrino oscillations through colliders in most of the R-parity conserving MSSM parameter space.
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              Basis independent study of Supersymmetry without R-parity and the tau neutrino mass

              In the most general R-parity violating model, including both bilinear and trilinear terms, the sneutrino receives a vacuum expectation value. We investigate the constraints on this vev following a basis independent approach, highlighting the relations between the three most popular basis. We study the prediction for the tau neutrino mass which follows from the minimization of the scalar potential in a SUGRA model with universality of the soft parameters at the GUT scale. Finally we show that the tau neutrino mass controls the R-parity violating effects both in the fermionic and scalar sectors.
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                Author and article information

                Journal
                24 August 1999
                2000-01-14
                Article
                10.1103/PhysRevD.62.015014
                hep-ph/9908451
                b5de2ca3-43cf-4fbb-a902-8514e9552d27
                History
                Custom metadata
                PPD-IOP-99/16
                Phys.Rev.D62:015014,2000
                31 pages, latex, no figures. Globally revised version with new exposition of results presented (to appear in Phys. Rev. D)
                hep-ph

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