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String completion of an SU(3)c ?SU(3)L ?U(1)X electroweak model

机译:SU(3)的字符串完成 c SU( 3) L U(1) X electroweak模型

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The extended electroweak S U ( 3 ) c ? S U ( 3 ) L ? U ( 1 ) X symmetry framework “explaining” the number of fermion families is revisited. While 331-based schemes can not easily be unified within the conventional field theory sense, we show how to do it within an approach based on D-branes and (un)oriented open strings, on Calabi–Yau singularities. We show how the theory can be UV-completed in a quiver setup, free of gauge and string anomalies. Lepton and baryon numbers are perturbatively conserved, so neutrinos are Dirac-type, and their lightness results from a novel TeV scale seesaw mechanism. Dynamical violation of baryon number by exotic instantons could induce neutron–antineutron oscillations, with proton decay and other dangerous R-parity violating processes strictly forbidden.
机译:扩展的电弱S U(3)c? S U(3)L? U(1)X对称框架重新解释了费米子家族的数量。虽然基于331的方案在传统的场论意义上不易统一,但我们展示了如何在基于Calbra–Yau奇点的D形和(非)定向开放弦的方法中实现该方案。我们展示了该理论如何在颤振装置中完成紫外线,而无轨距和弦线异常。轻子和重子数是扰动守恒的,因此中微子是狄拉克型的,它们的亮度来自于新型的TeV尺度跷跷板机制。外来瞬态动态违反重子数可能会引起中子-中子振荡,并严格禁止质子衰减和其他危险的R奇偶性违反过程。

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