arXiv · hep-ph/0102228
Large Mixing Angle MSW Solution in an SU(3)_LxU(1)_N Gauge Model with Two-loop Radiative Mechanism
Abstract
An SU(3)_L x U(1)_N gauge model, where E^{-i} (i=1,2,3) as heavy leptons are placed in the third member of lepton triplets, is shown to provide the large mixing angle (LMA) MSW solution to the solar neutrino problem. By introducing approximate conservation of L_e-L_mu-L_tau (\equiv L') into the model, we have estimated Δm_\odot^2 \sim \sqrt{2}εΔm_{atm}^2m_{E^1}/(m_{E^2}+m_{E^3}), where εrepresents L'-breaking effects and m_{E^i} is a mass of E^{-i}. Since Δm_{atm}^2 \sim 3 x 10^{-3} eV^2, the LMA solution is obtained for ε\sim 0.01-0.1 in the case of m_{E^1} \sim m_{E^{2,3}}. This mechanism utilizes two-loop radiative mechanism, which contains a triplet version of the singly charged Zee boson, h^+, given by ξ= (ξ^{++}, {\bar ξ}^+, h^+)^T. Almost bimaximal mixing is dynamically realized by the approximate equality between the ξ-couplings of the first family to the second and third families.
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Teruyuki Kitabayashi, Masaki Yasue. 2001-03-14. Large Mixing Angle MSW Solution in an SU(3)_LxU(1)_N Gauge Model with Two-loop Radiative Mechanism. https://doi.org/10.1016/s0370-2693(01)00397-5
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