The global symmetry in the flavor-unified theories
arXiv:2307.07921 · doi:10.1007/JHEP04(2024)046
Abstract
We study the origin of the global symmetry in a class of flavor-unified theories with gauge groups of . In particular, we focus on the theory which can minimally embed three-generational SM fermions non-trivially. A reformulation of the third law for the flavor sector proposed by Georgi is useful to manifest the underlying global symmetries. The 't Hooft anomaly matching and the generalized neutrality conditions for Higgs fields play the key roles in defining the symmetry. Based on the global symmetry, we count the Higgs fields that can develop the VEVs and the massless sterile neutrinos in the theory. We also prove that a global symmetry can always be defined in any theory when it is spontaneously broken to the SM gauge symmetry.
35 pages plus references, 11 tables, matches the published version
References in corpus (4)
Cited by in corpus (5)
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- The Standard Model quark/lepton masses and the Cabibbo-Kobayashi-Maskawa mixing in an theory
- The gauge coupling evolutions of an theory with the maximally symmetry breaking pattern
- The unification in an affine Lie algebra
- Further study of the maximally symmetry breaking patterns in an theory