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      Seesaw Neutrino Masses with Large Mixings from Dimensional Deconstruction

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          Abstract

          We demonstrate a dynamical origin for the dimension-five seesaw operator in dimensional deconstruction models. Light neutrino masses arise from the seesaw scale which corresponds to the inverse lattice spacing. It is shown that the deconstructing limit naturally prefers maximal leptonic mixing. Higher-order corrections which are allowed by gauge invariance can transform the bi-maximal into a bi-large mixing. These terms may appear to be non-renormalizable at scales smaller than the deconstruction scale.

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          Author and article information

          Journal
          28 March 2003
          2003-10-25
          Article
          10.1103/PhysRevLett.91.161803
          hep-ph/0303245
          032c9f82-16a8-484b-8dba-b10a5e307c49
          History
          Custom metadata
          TUM-HEP-503/03, DO-TH 03/05
          Phys.Rev.Lett. 91 (2003) 161803
          Revised version published in PRL
          hep-ph astro-ph

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