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- W2912175082 endingPage "114848" @default.
- W2912175082 startingPage "114848" @default.
- W2912175082 abstract "It is shown that neutrino mixing angles which are consistent with current experimental observations may be naturally obtained in a Pati-Salam model constructed from intersecting D6 branes on a $T^6/(Z_2 times Z_2)$ orientifold. The Dirac mass matrices in the model are naturally the same as those which are obtained by imposing a $mathbf{Delta(27)}$ flavor symmetry, which allows for near-tribimaximal mixing in the neutrino sector. In addition, it is possible to obtain the correct mass matrices for quarks and charged leptons, as well as nearly the correct CKM matrix. An RGE analysis of the neutrino mass parameters, including the seesaw mechanism assuming a specific form for the right-handed neutrino mass matrix is performed, and it is found that the neutrino mixing angles at the electroweak scale are $theta_{12}=35.0^{circ}$, $theta_{23}=47.1^{circ}$, and $theta_{13}=8.27^{circ}$. In addition,the neutrino mass-squared differences are found to be $Delta m^2_{32} = 0.00252$ eV$^2$ and $Delta m^2_{21} = 0.0000739$ eV$^2$ with $m_1=0.0146$ eV, $m_2=0.0170$ eV, and $m_3=0.0530$ eV." @default.
- W2912175082 created "2019-02-21" @default.
- W2912175082 creator A5036022810 @default.
- W2912175082 date "2020-01-01" @default.
- W2912175082 modified "2023-09-25" @default.
- W2912175082 title "All fermion masses and mixings in an intersecting D-brane world" @default.
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- W2912175082 doi "https://doi.org/10.1016/j.nuclphysb.2019.114848" @default.
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