arXiv:hep-ph/0502161·v5·High Energy Physics — Phenomenology
Bounds on the Neutrino Mixing Angles and CP Phase for an SO(10) Model with Lopsided Mass Matrices
Abstract
The bounds on the neutrino mixing angles and CP Dirac phase for an SO(10) model with lopsided mass matrices, arising from the presence of and Higgs representations, are studied by variation of the one real and three unknown complex input parameters for the right-handed Majorana neutrino mass matrix. The scatter plots obtained favor nearly maximal atmospheric neutrino mixing, while the reactor neutrino mixing lies in the range with values greater than most densely populated. A rather compelling scenario within the model follows, if we restrict the three unknown complex parameters to their imaginary axes and set two of them equal. We then find the scatter plots are reduced to narrow bands, as the mixing angles and CP phase become highly correlated and predictive. The bounds on the mixing angles and phase then become , , , and . Moreover, successful leptogenesis and subsequent baryogenesis are also obtained, with increasing from as increases from 0.45 to 0.55.
Comments: 23 pages, 5 sets of scatterplots, successful leptogenesis with strongly correlated neutrino mixing parameters, published version with added references