We present a model where Majorana neutrino mass terms are forbidden by the flavor symmetry group Delta(27). Neutrinos are Dirac fermions and their masses arise in the same way as those of the charged fermions, due to very small Yukawa couplings. The model fits current neutrino oscillation data and correlates the octant of the atmospheric angle theta(23) with the magnitude of the lightest neutrino mass, with maximal mixing excluded for any neutrino mass hierarchy
AbstractWe study the pseudo-Dirac mixing of left- and right-handed neutrinos in the case where the M...
We show that all the available experimental information involving neutrinos can be accounted for wit...
AbstractWe propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows f...
AbstractWe classify models of the Dirac neutrino mass by concentrating on flavor structures of the m...
We propose a minimal A4 flavor symmetric model, assisted by Z2× Z3 symmetry, which can naturally tak...
AbstractWe point out a new possibility for neutrinos where all neutrino flavors can be part Dirac an...
In light of the latest neutrino oscillation data, we revisit the minimal scenario of type-I seesaw m...
AbstractWe build the first 3-3-1 model based on the Δ(27) discrete group symmetry, consistent with f...
We study a neutrino mass model with $A_4$ flavor symmetry using a type-I seesaw mechanism. The inclu...
Neutrino masses and mixings are analyzed in terms of left-handed fields and a 6x6 complex symmetric ...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
We present a model for lepton masses and mixing angles using the deconstruction setup, based on a no...
We show that under a new U(1) gauge symmetry, which is non-anomalous in the presence of one ``right-...
We study, in the framework of the Standard Model, the propagation of (p= ure) Majorana neutrinos in ...
To explain the observed neutrino mixing, we exploit an A4 discrete flavor symmetric model, where neu...
AbstractWe study the pseudo-Dirac mixing of left- and right-handed neutrinos in the case where the M...
We show that all the available experimental information involving neutrinos can be accounted for wit...
AbstractWe propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows f...
AbstractWe classify models of the Dirac neutrino mass by concentrating on flavor structures of the m...
We propose a minimal A4 flavor symmetric model, assisted by Z2× Z3 symmetry, which can naturally tak...
AbstractWe point out a new possibility for neutrinos where all neutrino flavors can be part Dirac an...
In light of the latest neutrino oscillation data, we revisit the minimal scenario of type-I seesaw m...
AbstractWe build the first 3-3-1 model based on the Δ(27) discrete group symmetry, consistent with f...
We study a neutrino mass model with $A_4$ flavor symmetry using a type-I seesaw mechanism. The inclu...
Neutrino masses and mixings are analyzed in terms of left-handed fields and a 6x6 complex symmetric ...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
We present a model for lepton masses and mixing angles using the deconstruction setup, based on a no...
We show that under a new U(1) gauge symmetry, which is non-anomalous in the presence of one ``right-...
We study, in the framework of the Standard Model, the propagation of (p= ure) Majorana neutrinos in ...
To explain the observed neutrino mixing, we exploit an A4 discrete flavor symmetric model, where neu...
AbstractWe study the pseudo-Dirac mixing of left- and right-handed neutrinos in the case where the M...
We show that all the available experimental information involving neutrinos can be accounted for wit...
AbstractWe propose a simple model for Dirac neutrinos where the smallness of neutrino mass follows f...