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- W2053720827 abstract "We present a model of the weak-interaction Lagrangian based on $S{U}_{3}$ symmetry and the assumed existence of intermediate vector mesons ($W$ mesons). The requirement that the effective Lagrangian resulting from contraction of the $W$ mesons should induce no $|ensuremath{Delta}S|=2$ transition in the lowest order leads us to assume complex values for some of the coupling constants, which implies that the model is intrinsically $mathrm{CP}$ violating. The effects of the $mathrm{CP}$ violation will be found in processes of $W$-meson production or those involving higher orders in the Fermi coupling constant ${G}_{F}$. As far as the ${K}^{0}ensuremath{-}{overline{K}}^{0}$ system is concerned, the prediction of the model is similar to that of a superweak theory, although in this model the observed $mathrm{CP}$ violation is due to a combined effect of the higher-order weak interactions and the other $mathrm{CP}$-conserving but $S{U}_{3}$-symmetry-breaking interactions (such as the electromagnetic and the medium-strong interactions). Some other possibilities for the cause of $mathrm{CP}$ violation are also discussed, in which case the prediction is not necessarily the same as that of a superweak theory. The Cabibbo angle is defined as the ratio between the coupling constants of the $S{U}_{3}$-symmetric and symmetry-breaking hadronic terms of the weak interactions." @default.
- W2053720827 created "2016-06-24" @default.
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- W2053720827 date "1970-10-15" @default.
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- W2053720827 title "Intermediate Vector Mesons, Unitary Symmetry, and theCPViolation" @default.
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- W2053720827 doi "https://doi.org/10.1103/physrevd.2.1586" @default.
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