4.7 Article

Quark masses and CKM hierarchies fromS′4 modular flavor symmetry

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EUROPEAN PHYSICAL JOURNAL C
卷 83, 期 12, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-023-12303-2

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This study proposes models that utilize S'(4) modular flavor symmetry to explain the hierarchies of quark masses and mixing. The hierarchy is realized by stabilizing the modulus tau at Im tau >> 1, where the residual Z(4)(T) symmetry is approximately unbroken. The study finds that the quark hierarchies are only realized in certain cases of quark representations.
We propose models to explain the hierarchies of the quark masses and mixing by utilizing the S '(4) modular flavor symmetry. The hierarchy is realized by the modulus tau stabilized at Im tau >> 1, where the residual Z(4)(T) symmetry is approximately unbroken and the Froggatt-Nielsen mechanism works. It is found that the quark hierarchies are realized only in a few cases of quark representations. We study two models with assigning the modular weights, so that the observed quark hierarchies are explained in the cases of both small and large ratios of the top to bottom Yukawa couplings. We also argue that O(0.1) hierarchies of the O(1) coefficients can be explained by imposing another S-3 modular symmetry.

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