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Trimaximal mixing with predicted θ13 from a new type of constrained sequential dominance
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Trimaximal mixing with predicted θ13 from a new type of constrained sequential dominance

Stefan Antusch, Stephen F. King, Christoph LuhnMartin Spinrath
Nuclear Physics B, 卷.856(2), 頁碼.328-341
03/2012

摘要

Nuclear and High Energy Physics
Following the recent T2K indication of a sizeable reactor angle, we present a class of models which fix θ 13 while preserving trimaximal solar mixing. The models are based on a new type of constrained sequential dominance involving new vacuum alignments, along the (1, 2, 0) T or (1, 0, 2) T directions in flavour space. We show that such alignments are easily achieved using orthogonality, and may replace the role of the subdominant flavon alignment (1, 1, 1) T in constrained sequential dominance. In such models, with a normal hierarchical spectrum, the reactor angle is related to a ratio of neutrino masses by θ13=23m2νm3ν, leading to θ 13 ~5°-6°, while the atmospheric angle is given by the sum rule θ≈45°+2θ13cosδ. We find that leptogenesis is unsuppressed due to the violation of form dominance and that the CP violating phase responsible for leptogenesis is precisely equal to the Dirac CP phase δ, providing a direct link between leptogenesis and neutrino mixing in this class of models. © 2011 Elsevier B.V.

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https://doi.org/10.1016/j.nuclphysb.2011.11.009檢視
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