Generating θ13 from sterile neutrinos in μ - τ symmetric models

Abstract

The smallness of the θ13 mixing angle as observed in neutrino oscillation experiments can be understood through an approximated μ - τ exchange symmetry in the neutrino mass matrix. Using recent oscillation neutrino data, but assuming no CP violation, we study μ-τ breaking parameter space to establish the conditions under which such a breaking could have a perturbative origin. According to the so-obtained conditions, we suggest that a sterile neutrino, matching LSND/MiniBooNE neutrino oscillation results, could provide the necessary ingredients to properly fix atmospheric and θ13 mixing angles to observable values, without exceeding the sterile neutrino fraction bound in solar oscillations. In such a scenario, we analyze the general effect of a fourth neutrino on the prediction for the effective mee majorana mass parameter.

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