English

CP violating phase and quark mixing angles from flavour permutational symmetry breaking

High Energy Physics - Phenomenology 2016-09-06 v1

Abstract

The phase equivalence of the theoretical quark mixing matrix Vth{\bf V}^{th} derived from the breaking of the flavour permutational symmetry and the phenomenological parametrizations VPDG{\bf V}^{PDG} and VKM{\bf V}^{KM} is explicitly exhibited. From here, we derive exact explicit expressions for the three mixing angles and the CP violating phase of the two phenomenological parametrizations in terms of the quark mass ratios (mu/mt,mc/mt,md/mb,ms/mb)(m_{u}/m_{t}, m_{c}/m_{t}, m_{d}/m_{b}, m_{s}/m_{b}) and the parameters Z1/2Z^{*1/2} and Φ\Phi^* characterizing the preferred symmetry breaking pattern. The computed values for the CP violating phase and the mixing angles of the standard parametrization advocated by the Particle Data Group are δ13=73.2\delta^*_{13}=73.2^\circ, sinθ12=0.222\sin\theta^*_{12}=0.222, sinθ13=0.0036\sin\theta^*_{13}=0.0036, and sinθ23=0.040\sin\theta^*_{23}=0.040. The computed values of the CP-violating phase and the mixing angles of the Kobayashi-Maskawa parametrization are δKM=96.4\delta^*_{KM}=96.4^\circ, sinθ1=0.2225\sin\theta^*_{1}=0.2225, sinθ2=0.0384\sin\theta^*_{2}=0.0384, and sinθ3=0.0162\sin\theta^*_{3}=0.0162. In both cases, the numerical values of the mixing angles and CP-violating phase computed from quark masses and the flavour symmetry breaking parameters coincide almost exactly with the central values of the same parameters obtained from a fit to experimental data.

Keywords

Cite

@article{arxiv.hep-ph/0003104,
  title  = {CP violating phase and quark mixing angles from flavour permutational symmetry breaking},
  author = {A. Mondragon and E. Rodriguez-Jauregui},
  journal= {arXiv preprint arXiv:hep-ph/0003104},
  year   = {2016}
}

Comments

30 pages, Proceedings of the XXXIII Symposium on Nuclear Physics, Oaxtepec, Morelos, Mexico, 2000