We propose a model based on an alternative U(1)B−L gauge symmetry with 5 dimensional operators in the Lagrangian, and we construct the neutrino masses at one-loop level, and discuss lepton flavor violations, dark matter, and the effective number of neutrino species due to two massless particles in our model. Then we search allowed region to satisfy the current experimental data of neutrino oscillation and lepton flavor violations without conflict of several constraints such as stability of dark matter and the effective number of neutrino species, depending on normal hierarchy and inverted one
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
Abstract We formulate a predictive model of fermion masses and mixings based on a Δ(27) family symme...
Cosmological constraints on the sum of the neutrino masses can be relaxed if the number density of a...
We propose a radiative seesaw model in an alternative left–right model without any bidoublet scalar ...
We study a radiative seesaw model at one-loop level with a flavor dependent gauge symmetry U(1)μ−τ, ...
AbstractWe discuss a one loop model for neutrino masses which leads to a seesaw-like formula with th...
We propose a predictive radiative seesaw model at one-loop level with a flavor dependent gauge symme...
Abstract We propose a model which generates neutrino masses by the inverse seesaw mechanism, provide...
AbstractAn anomaly-free U(1) gauge extension of the standard model (SM) is presented. Only one Higgs...
We propose a gauged U(1)B−L extension of the standard model (SM) to explain simultaneously the light...
AbstractWe propose a radiative seesaw model at the three-loop level, in which quarks, leptons, lepto...
An anomaly-free U(1) gauge extension of the standard model (SM) is presented. Only one Higgs doublet...
We propose a radiative seesaw model at the three-loop level, in which quarks, leptons, leptoquark bo...
Radiative neutrino mass models and the seesaw models are viewed from the unifying framework of stand...
Abstract In the light of the $$e^{+}+e^{-}$$ e++e- excess observed by DAMPE experiment, we propose a...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
Abstract We formulate a predictive model of fermion masses and mixings based on a Δ(27) family symme...
Cosmological constraints on the sum of the neutrino masses can be relaxed if the number density of a...
We propose a radiative seesaw model in an alternative left–right model without any bidoublet scalar ...
We study a radiative seesaw model at one-loop level with a flavor dependent gauge symmetry U(1)μ−τ, ...
AbstractWe discuss a one loop model for neutrino masses which leads to a seesaw-like formula with th...
We propose a predictive radiative seesaw model at one-loop level with a flavor dependent gauge symme...
Abstract We propose a model which generates neutrino masses by the inverse seesaw mechanism, provide...
AbstractAn anomaly-free U(1) gauge extension of the standard model (SM) is presented. Only one Higgs...
We propose a gauged U(1)B−L extension of the standard model (SM) to explain simultaneously the light...
AbstractWe propose a radiative seesaw model at the three-loop level, in which quarks, leptons, lepto...
An anomaly-free U(1) gauge extension of the standard model (SM) is presented. Only one Higgs doublet...
We propose a radiative seesaw model at the three-loop level, in which quarks, leptons, leptoquark bo...
Radiative neutrino mass models and the seesaw models are viewed from the unifying framework of stand...
Abstract In the light of the $$e^{+}+e^{-}$$ e++e- excess observed by DAMPE experiment, we propose a...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
Abstract We formulate a predictive model of fermion masses and mixings based on a Δ(27) family symme...
Cosmological constraints on the sum of the neutrino masses can be relaxed if the number density of a...