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Theory and phenomenology of Dirac neutrinos

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arxiv 2110.15755 v1 pith:QCZ5ODNU submitted 2021-10-29 hep-ph

Theory and phenomenology of Dirac neutrinos

classification hep-ph
keywords somediracneutrinosdetailmassmodelsseesawsymmetries
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this thesis I discuss in some detail the possibility that neutrinos are Dirac. If this is indeed the case, some extra symmetries beyond the Standard Model gauge group need to be enforced in order to protect Diracness and the smallness of neutrino mass. These symmetries may have a deep connection with other physics sectors, like Dark Matter stability. I also review the general seesaw framework applied to Dirac neutrinos in a model-independent way thanks to the analysis of generalized Weinberg operators and give some simple, elegant UV complete examples both for seesaw variants and radiative mass models. Finally I study in some detail two models with very rich phenomenological predictions.

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  1. Dirac one-loop seesaw in a non-invertible fusion rule

    hep-ph 2026-04 unverdicted novelty 6.0

    A one-loop Dirac neutrino mass model stabilized by a non-invertible fusion rule from Z3 x Z3' accommodates oscillation data and provides a viable bosonic dark matter candidate.