arXiv · hep-ph/0410279
Softly broken lepton number L_e - L_μ- L_τwith non-maximal solar neutrino mixing
Abstract
We consider the most general neutrino mass matrix which leads to $θ_{13} = 0$, and present the formulae needed for obtaining the neutrino masses and mixing parameters in that case. We apply this formalism to a model based on the lepton number $\bar L = L_e - L_μ- L_τ$ and on the seesaw mechanism. This model needs only one Higgs doublet and has only two right-handed neutrino singlets. Soft $\bar L$ breaking is accomplished by the Majorana mass terms of the right-handed neutrinos; if the $\bar L$-conserving and $\bar L$-breaking mass terms are of the same order of magnitude, then it is possible to obtain a consistent $\bar L$ model with a solar mixing angle significantly smaller than $45^\circ$. We show that the predictions of this model, $m_3 = 0$ and $θ_{13} = 0$, are invariant under the renormalization-group running of the neutrino mass matrix.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
W. Grimus, L. Lavoura. 2004-10-20. Softly broken lepton number L_e - L_μ- L_τwith non-maximal solar neutrino mixing. https://doi.org/10.1088/0954-3899%2F31%2F7%2F013
Cite the original work for its findings. Save a collection to share your selection of sources.