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Prediction of the CP Phase $\delta_{CP}$ in the Neutrino Oscillation and an Axion-less Solution to the Strong CP Problem
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abstract
A model of the axion-less solution to the strong CP problem has been recently constructed based on the $\bf T^2/\mathbb{Z}_3$ orbifold in the six dimensional space-time. We extend, in this paper, the model to include the lepton sector with three right-handed neutrinos. A crucial point in the extended model is that we have only one CP-violating phase and thus the CP phase in the neutrino oscillation can be predicted by the CP phase in the CKM matrix. The CP phase $\delta_{CP}$ in the PMNS matrix is predicted as $\delta_{CP}\simeq 192^\circ - 195^\circ$ which can be tested in the near future experiments. We also discuss the effective mass $m_{\beta\beta}$ responsible for the neutrino-less double beta decay of nucleus, which is predicted as $m_{\beta\beta} \simeq 8-11$\,meV. We consider the leptogenesis and confirm that our model generates the right sign of the baryon asymmetry if the first family right-handed neutrino is the lightest among the heavy right-handed neutrinos.
Forward citations
Cited by 2 Pith papers
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Search for an Anomalous Excess of Single Photons in the MicroBooNE Neutrino Experiment
MicroBooNE observes no significant excess of neutral-current Delta radiative decay single photons, which disfavors enhanced-Delta explanations of the MiniBooNE anomaly but leaves zero-proton single-photon sources unco...
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Non-invertible symmetry as an axion-less solution to the strong CP problem
A non-invertible Z5 x Z3 x Z3 symmetry is shown to produce a three-zero down-type quark mass texture with real determinant, giving an axion-free route to solving the strong CP problem.
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