arXiv · 1711.08796
Quark-lepton complementarity model based predictions for $θ_{23}^{PMNS}$ with neutrino mass hierarchy
Abstract
After the successful investigation and confirmation of non zero $θ_{13}^{PMNS}$ by various experiments, we are standing at a square where we still encounter a number of issues, which are to be settled. In this paper, we have extended our recent work towards a precise prediction of the $θ_{23}^{PMNS}$ mixing angle, taking into account the neutrino mass hierarchy. We parameterize the non-trivial correlation between quark (CKM) and lepton (PMNS) mixing matrices in quark-lepton complementarity (QLC) model as $V_{c}= U_{CKM}. ψ. U_{PMNS}$, where $ψ$ is a diagonal phase matrix. Monte Carlo simulations are used to estimate the texture of $V_{c}$ and compare the results with the standard Tri-Bi-Maximal (TBM) and Bi-Maximal(BM) structures of neutrino mixing matrix. We have predicted the value of $θ_{23}^{PMNS} $ for normal and inverted neutrino mass hierarchies. The value of $θ_{23}^{PMNS}$ obtained for two cases are about $1.3σ$ away from each other, implying the better precision can give us a strong hint for the type of neutrino mass hierarchy.
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Gazal Sharma, Shankita Bhardwaj, B. C. Chauhan, Surender Verma. 2018-06-26. Quark-lepton complementarity model based predictions for $θ_{23}^{PMNS}$ with neutrino mass hierarchy. https://doi.org/10.1007/978-3-319-73171-1_57
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