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Baryon number, lepton number, and operator dimension in the SMEFT with flavor symmetries

机译:带有气味对称性的SMEFT中的重子数,轻子数和操作员维度

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Using group theory techniques, we investigate the mathematical relationship between baryon number, lepton number, and operator dimension in the Standard Model effective field theory (SMEFT), when flavor symmetries are present. For a large set of flavor symmetries, the lowest-dimensional baryon- or lepton-number violating operators in the SMEFT with flavor symmetry are of mass dimension 9. As a consequence, baryon- and lepton-number violating processes are further suppressed with the introduction of flavor symmetries, e.g., the allowed scale associated with proton decay is typically lowered to 105GeV, which is significantly lower than the GUT scale. To illustrate these features, we discuss Minimal Flavor Violation for the Standard Model augmented by sterile neutrinos.
机译:当存在香味对称性时,我们使用群论技术研究标准模型有效场理论(SMEFT)中的重子数,轻子数和算子维数之间的数学关系。对于大量的风味对称性,SMEFT中具有风味对称性的最低维重子数或轻子数违规算子的质量维数为9。因此,引入后,进一步抑制了重子数和轻子数违规过程风味对称性的降低,例如,与质子衰变相关的允许尺度通常降低到105GeV,这大大低于GUT尺度。为了说明这些功能,我们讨论了由无菌中微子增强的标准模型的最小违规行为。

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