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Testable two-loop radiative neutrino mass model based on an $LLQd^cQd^c$ effective operator

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arxiv 1308.0463 v3 pith:WGCI6AR5 submitted 2013-08-02 hep-ph

classification hep-ph
keywords modelneutrinocollidercolor-octeteffectiveepsilonfermionlepton
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

A new two-loop radiative Majorana neutrino mass model is constructed from the gauge-invariant effective operator $L^i L^j Q^k d^c Q^l d^c \epsilon_{ik} \epsilon_{jl}$ that violates lepton number conservation by two units. The ultraviolet completion features two scalar leptoquark flavors and a color-octet Majorana fermion. We show that there exists a region of parameter space where the neutrino oscillation data can be fitted while simultaneously meeting flavor-violation and collider bounds. The model is testable through lepton flavor-violating processes such as ${\mu} \to e{\gamma}$, $\mu \to eee$, and $\mu N \to eN$ conversion, as well as collider searches for the scalar leptoquarks and color-octet fermion. We computed and compiled a list of necessary Passarino-Veltman integrals up to boxes in the approximation of vanishing external momenta and made them available as a Mathematica package, denoted as ANT.

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