2020
DOI: 10.1103/physrevd.101.075019
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Dark origin of the quark flavor hierarchy and mixing

Abstract: We provide a dynamical mechanism for the generation of the Cabibbo-Kobayashi-Maskawa matrix in the context of a recently proposed model of flavor. The framework, based on the paradigm that Yukawa couplings are effective low energy couplings generated radiatively by dark sector interactions, is here extended to include a new scalar field which plays the role of a dark flavon. Being singlet under the Standard Model gauge group but charged under the U (1) symmetry of the dark sector, this particle sources new two… Show more

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Cited by 3 publications
(12 citation statements)
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“…For instance, the use of nonperturbative dynamics in the dark sector easily allows exponentially spread dark fermions masses. The mechanism can therefore generate hierarchical SM Yukawa couplings that naturally fit the observed values, thereby solving the SM flavor puzzle [32][33][34]. Since in the present paper we are mainly concerned with the stability of the EW vacuum, which is not sensitive to the details of the flavour structure, we restrict ourselves to the generation of flavor-diagonal Yukawa couplings.…”
Section: Jhep01(2022)142mentioning
confidence: 99%
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“…For instance, the use of nonperturbative dynamics in the dark sector easily allows exponentially spread dark fermions masses. The mechanism can therefore generate hierarchical SM Yukawa couplings that naturally fit the observed values, thereby solving the SM flavor puzzle [32][33][34]. Since in the present paper we are mainly concerned with the stability of the EW vacuum, which is not sensitive to the details of the flavour structure, we restrict ourselves to the generation of flavor-diagonal Yukawa couplings.…”
Section: Jhep01(2022)142mentioning
confidence: 99%
“…For instance, the mechanism is straightforwardly embedded in the scenarios of refs. [32][33][34] which were originally designed to solve the flavor hierarchy problem. In more detail, the tree-level Yukawa operators are forbidden by a new symmetry S: a discrete symmetry in ref.…”
Section: Jhep01(2022)142mentioning
confidence: 99%
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Vacuum stability with radiative Yukawa couplings

Gabrielli,
Marzola,
Müürsepp
et al. 2021
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