English

Spontaneous leptonic CP violation and nonzero $\theta_{13}$

High Energy Physics - Phenomenology 2013-05-30 v2

Abstract

We consider a simple extension of the Standard Model by adding two Higgs triplets and a complex scalar singlet to its particle content. In this framework, the CP symmetry is spontaneously broken at high energies by the complex vacuum expectation value of the scalar singlet. Such a breaking leads to leptonic CP violation at low energies. The model also exhibits an A4×Z4A_4\times Z_4 flavour symmetry which, after being spontaneously broken at a high-energy scale, yields a tribimaximal pattern in the lepton sector. We consider small perturbations around the tribimaximal vacuum alignment condition in order to generate nonzero values of θ13\theta_{13}, as required by the latest neutrino oscillation data. It is shown that the value of θ13\theta_{13} recently measured by the Daya Bay Reactor Neutrino Experiment can be accommodated in our framework together with large Dirac-type CP violation. We also address the viability of leptogenesis in our model through the out-of-equilibrium decays of the Higgs triplets. In particular, the CP asymmetries in the triplet decays into two leptons are computed and it is shown that the effective leptogenesis and low-energy CP-violating phases are directly linked.

Keywords

Cite

@article{arxiv.1203.2646,
  title  = {Spontaneous leptonic CP violation and nonzero $\theta_{13}$},
  author = {G. C. Branco and R. Gonzalez Felipe and F. R. Joaquim and H. Serodio},
  journal= {arXiv preprint arXiv:1203.2646},
  year   = {2013}
}

Comments

17 pages; 6 figures; references added and typos corrected. Final version to appear in PRD

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