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arXiv:1802.05044·v3·High Energy Physics — Phenomenology

Fermion masses and flavor mixings and strong CP problem

Y. H. Ahn🇰🇷

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Abstract

For all the success of the Standard Model (SM), it is on the verge of being surpassed. In this regard we argue, by showing a minimal flavor-structured model based on the non-Abelian discrete symmetry, that mixed-gravitational anomaly cancellation could be of central importance in constraining the fermion contents of a new chiral gauge theory. Such anomaly-free condition together with the SM flavor structure demands a condition with being a charge of and being an integer, both of which are flavor dependent. We show that axionic domain-wall condition with the anomaly free-condition depends on both charged quark and lepton flavors; the seesaw scale congruent to the scale of Peccei-Quinn symmetry breakdown can be constrained through constraints coming from astrophysics and particle physics. Then the model extended by symmetry can well be flavor-structured in a unique way that with the mixed-gravitational anomaly-free condition demands additional Majorana fermion and the flavor puzzles of SM are well delineated by new expansion parameters expressed in terms of charges and - anomaly coefficients. And the model provides remarkable results on neutrino (hierarchical mass spectra and unmeasurable neutrinoless-double-beta decay rate together with the predictions on atmospheric mixing angle and leptonic Dirac CP phase favored by the recent long-baseline neutrino experiments), QCD axion, and flavored-axion.

Comments: Title is changed, Accepted in Nuclear Physics B

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