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      Beyond the Spectral Standard Model: Emergence of Pati-Salam Unification

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          Abstract

          The assumption that space-time is a noncommutative space formed as a product of a continuous four dimensional manifold times a finite space predicts, almost uniquely, the Standard Model with all its fermions, gauge fields, Higgs field and their representations. A strong restriction on the noncommutative space results from the first order condition which came from the requirement that the Dirac operator is a differential operator of order one. Without this restriction, invariance under inner automorphisms requires the inner fluctuations of the Dirac operator to contain a quadratic piece expressed in terms of the linear part. We apply the classification of product noncommutative spaces without the first order condition and show that this leads immediately to a Pati-Salam SU(2)_{R}x SU(2)_{L}x SU(4) type model which unifies leptons and quarks in four colors. Besides the gauge fields, there are 16 fermions in the (2,1,4)+(1,2,4) representation, fundamental Higgs fields in the (2,2,1), (2,1,4) and (1,1,1+15) representations. Depending on the precise form of the order one condition or not there are additional Higgs fields which are either composite depending on the fundamental Higgs fields listed above, or are fundamental themselves. These additional Higgs fields break spontaneously the Pati-Salam symmetries at high energies to those of the Standard Model.

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          Author and article information

          Journal
          2013-04-30
          2014-09-25
          Article
          10.1007/JHEP11(2013)132
          1304.8050
          1d322885-f18f-4e87-9c27-e5588b3bc0d5

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          JHEP 1311 (2013) 132
          Typographical error in Abstract corrected
          hep-th hep-ph math.QA

          High energy & Particle physics,Algebra
          High energy & Particle physics, Algebra

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