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Anomaly-free Abelian gauge symmetries with Dirac scotogenic models

Nicolás Bernal, Julián Calle, Diego Restrepo

2021Physical review. D/Physical review. D.17 citationsDOIOpen Access PDF

Abstract

We perform a systematic analysis of standard model extensions with an additional anomaly-free gauge $U(1)$ symmetry, to generate Dirac neutrino masses at one loop. Under such symmetry, standard model fields could either transform or be invariant, corresponding to an active $U(1{)}_{X}$ or a dark $U(1{)}_{D}$ symmetry, respectively. Having an anomaly-free symmetry imposes nontrivial conditions to the number and charges of the unavoidable new states. We perform an intensive scan, looking for nonanomalous solutions for a given number of extra chiral fermions. In particular, we concentrate on solutions giving rise to scotogenic neutrino masses via the effective Dirac mass operator. We study the cases where the Dirac mass operator with dimension 5 or 6 is mediated by Dirac or Majorana states and corresponds to an active $U(1{)}_{X}$ or a dark $U(1{)}_{D}$ symmetry. Finally, we comment on the solutions featuring no massless chiral fermions.

Topics & Concepts

PhysicsParticle physicsAnomaly (physics)Dirac fermionStandard Model (mathematical formulation)MAJORANANeutrinoTheoretical physicsMathematical physicsFermionQuantum mechanicsGauge (firearms)ArchaeologyHistoryParticle physics theoretical and experimental studiesNeutrino Physics ResearchNoncommutative and Quantum Gravity Theories
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