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The first is non-LFUV couplings of the new neutral gauge boson $\\text{Z}^{\\prime}$ with leptons, $\\text{g}^{\\text{Z}^\\prime}(e)\\neq \\text{g}^{\\text{Z}^\\prime}(\\mu,\\tau)$, which causes the $\\text{R}_\\text{K}$, $\\text{R}_{\\text{K}^*}$ anomalies via $\\text{Z}^\\prime$-penguin diagrams involving newly charged gauge bosons $\\text{X}^{\\pm}_{\\mu}$, and exotic U-quarks. The box diagram's contribution is the second source, which induced only the first lepton generation. 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T. Huong, N. T. Duy, P. N. Thu","submitted_at":"2022-05-06T03:24:52Z","abstract_excerpt":"There are two sources that help to explain the $\\text{R}_\\text{K}$, $\\text{R}_{\\text{K}^*}$ anomalies in the MF331 model. The first is non-LFUV couplings of the new neutral gauge boson $\\text{Z}^{\\prime}$ with leptons, $\\text{g}^{\\text{Z}^\\prime}(e)\\neq \\text{g}^{\\text{Z}^\\prime}(\\mu,\\tau)$, which causes the $\\text{R}_\\text{K}$, $\\text{R}_{\\text{K}^*}$ anomalies via $\\text{Z}^\\prime$-penguin diagrams involving newly charged gauge bosons $\\text{X}^{\\pm}_{\\mu}$, and exotic U-quarks. The box diagram's contribution is the second source, which induced only the first lepton generation. 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