We consider the A4, S4, and A5 discrete lepton flavor symmetries in the case of 3-neutrino mixing, broken down to nontrivial residual symmetries in the charged lepton and neutrino sectors in such a way that at least one of them is a Z2. Such symmetry breaking patterns lead to predictions for some of the three neutrino mixing angles and/or the leptonic Dirac CP violation phase δ of the neutrino mixing matrix. We assess the viability of these predictions by performing a statistical analysis which uses as an input the latest global data on the neutrino mixing parameters. We find 14 phenomenologically viable cases providing distinct predictions for some of the mixing angles and/or the Dirac phase δ. Employing the current best fit values of the ...
The observed leptonic mixing pattern could be explained by the presence of a discrete flavor symmetr...
Neutrino mixing is a thriving area of particle physics research, with the recent discovery of non-ze...
Small discrete family symmetries such as S4, A4 or A5 may lead to simple leading-order predictions f...
We consider the A4, S4, and A5 discrete lepton flavor symmetries in the case of 3-neutrino mixing, b...
We consider the A4, S4 and A5 discrete lepton flavor symmetries broken down to nontrivial residual s...
We consider the A4, S4 and A5 discrete lepton flavor symmetries broken down to nontrivial residual s...
We consider a class of models of neutrino mixing with S4 lepton flavour symmetry combined with a gen...
Models of leptonic flavour with discrete symmetries can provide an attractive explanation of the pat...
We construct phenomenologically viable models of lepton masses and mixing based on modular A 4 invar...
The current status of our knowledge of the 3-neutrino mixing parameters and of the CP violation in t...
We consider schemes of neutrino mixing arising within the discrete symmetry approach to the well-kno...
We propose a minimal A4 flavor symmetric model, assisted by Z2×Z3 symmetry, which can naturally tak...
We study a neutrino mass model with $A_4$ flavor symmetry using a type-I seesaw mechanism. The inclu...
We propose a minimal A4 flavor symmetric model, assisted by Z2× Z3 symmetry, which can naturally tak...
AbstractIn the recent years, the industry of model building has been the subject of the intense acti...
The observed leptonic mixing pattern could be explained by the presence of a discrete flavor symmetr...
Neutrino mixing is a thriving area of particle physics research, with the recent discovery of non-ze...
Small discrete family symmetries such as S4, A4 or A5 may lead to simple leading-order predictions f...
We consider the A4, S4, and A5 discrete lepton flavor symmetries in the case of 3-neutrino mixing, b...
We consider the A4, S4 and A5 discrete lepton flavor symmetries broken down to nontrivial residual s...
We consider the A4, S4 and A5 discrete lepton flavor symmetries broken down to nontrivial residual s...
We consider a class of models of neutrino mixing with S4 lepton flavour symmetry combined with a gen...
Models of leptonic flavour with discrete symmetries can provide an attractive explanation of the pat...
We construct phenomenologically viable models of lepton masses and mixing based on modular A 4 invar...
The current status of our knowledge of the 3-neutrino mixing parameters and of the CP violation in t...
We consider schemes of neutrino mixing arising within the discrete symmetry approach to the well-kno...
We propose a minimal A4 flavor symmetric model, assisted by Z2×Z3 symmetry, which can naturally tak...
We study a neutrino mass model with $A_4$ flavor symmetry using a type-I seesaw mechanism. The inclu...
We propose a minimal A4 flavor symmetric model, assisted by Z2× Z3 symmetry, which can naturally tak...
AbstractIn the recent years, the industry of model building has been the subject of the intense acti...
The observed leptonic mixing pattern could be explained by the presence of a discrete flavor symmetr...
Neutrino mixing is a thriving area of particle physics research, with the recent discovery of non-ze...
Small discrete family symmetries such as S4, A4 or A5 may lead to simple leading-order predictions f...