arXiv · 1303.3393
Charged lepton correction to tribimaximal lepton mixing and its implications to neutrino phenomenology
Abstract
The recent results from Daya Bay and RENO reactor neutrino experiments have firmly established that the smallest reactor mixing angle $θ_{13}$ is non-vanishing at the $5 σ$ level, with a relatively large value, i.e., $θ_{13}\approx 9^{\circ}$. Using the fact that the neutrino mixing matrix can be represented as $V_{\rm PMNS}=U_l^{\dagger} U_ν P_ν$, where $U_l$ and $U_ν$ result from the diagonalization of the charged lepton and neutrino mass matrices and $P_ν$ is a diagonal matrix containing the Majorana phases and assuming the tri-bimaximal form for $U_ν$, we investigate the possibility of accounting for the large reactor mixing angle due to the corrections of the charged lepton mixing matrix. The form of $U_{l}$ is assumed to be that of CKM mixing matrix of the quark sector. We find that with this modification it is possible to accommodate the large observed reactor mixing angle $θ_{13}$. We also study the implications of such corrections on the other phenomenological observables.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Srinu Gollu, K. N. Deepthi, R. Mohanta. 2013-07-29. Charged lepton correction to tribimaximal lepton mixing and its implications to neutrino phenomenology. https://doi.org/10.1142/s0217732313501319
Cite the original work for its findings. Save a collection to share your selection of sources.