Cartan's Supersymmetry and the violation of CP symmetry

Abstract

Cartan's supersymmetriy fixes couplings of two types of fermions , φ and two types of vector fields xi and xi', (i=1,2,3,4). The electromagnetic interaction of leptons and quarks is expressed as t Cxi. In the case of coupling of leptons and quarks with W, we extend the coupling tφ CX to tφ CX(1-γ5), where X=xi or xi', and unify the interactions in the form tφ Cxi+tφ C xi' C , where xi implies appropriate xi or (-γ5 xi) is chosen. The γ5 term induces in time component of B0 K0\, J/, K0 with the s quark dominated by the small component, while in space components of B0 K0\, J/, K0 with the s quark dominated by the small component. This asymmetry could be the origin of the CP asymmetry in the B0 K0\, J/. We apply the model to Bs(d)0 Ds(d)- Ds(d)+ decays and study violation of CP symmetry via interference of tree and penguin contributions, and observe that the asymmetry is weak consistent to the experiment.

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