Systematic analysis of Dirac neutrino masses from a dimension five operator

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Abstract

We perform a systematic study of the Dirac neutrino masses which arise from a dimension five effective operator with a singlet scalar. We identify all possible realizations of this operator at tree level and one-loop level. The corresponding predictions for the particle content and neutrino mass matrix are presented. We add a Z2 symmetry to forbid the renormalizable Yukawa coupling, and non-Abelian discrete flavor symmetry can be used to forbid tree level diagrams in non-genuine one-loop models. The electrically neutral particle mediating the loop diagram could be dark matter candidate. We give the possible dark matter particles and the restrictions on the parameter α for each model.

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APA

Yao, C. Y., & Ding, G. J. (2018). Systematic analysis of Dirac neutrino masses from a dimension five operator. Physical Review D, 97(9). https://doi.org/10.1103/PhysRevD.97.095042

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