arXiv · 1405.5886
The Dark Side of $θ_{13}$, $δ_{CP}$, Leptogenesis and Inflation in Type-I Seesaw
Abstract
In the context of the type-I seesaw mechanism, it is known that $θ_{13}$ is zero and leptogenesis can not be realized if there exists a residual flavor symmetry resulting in the Tri-Bimaximal neutrino mixing pattern. We propose a simple framework where additional particles, odd under a $Z_2$ symmetry, break the residual flavor symmetry and the lightest of the $Z_2$ odd particles is the dark matter candidate. As as result, nonzero $θ_{13}$, $δ_{CP}$, leptogenesis and the correct dark matter density can be accommodated. On the other hand, a $Z_2$ odd scalar can play the role of the inflaton with mass of $10^{13}$ GeV motivated by the recent BICEP2 results. Interestingly, the model can "generate" $δ_{CP} \simeq -π/2$, preferred by the T2K experiment in the normal hierarchy neutrino mass spectrum.
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Wei-Chih Huang. 2014-11-17. The Dark Side of $θ_{13}$, $δ_{CP}$, Leptogenesis and Inflation in Type-I Seesaw. https://doi.org/10.1007/jhep11(2014)083
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