We propose a new seesaw mechanism for neutrino masses within a class of supersymmetric SO(10) models with broken D-parity. It is shown that in such scenarios the B-L scale can be as low as TeV without generating inconsistencies with gauge coupling unification nor with the required magnitude of the light neutrino masses. This leads to a possibly light new neutral gauge boson as well as relatively light quasi-Dirac heavy leptons. These particles could be at the TeV scale and mediate lepton flavour and CP violating processes at appreciable levels
The seesaw mechanism can explain why the neutrino masses are so tiny with respect to the charged fer...
Current neutrino oscillation data indicate the existence of two large lepton mixing angles, while Ko...
We study a new supersymmetric mechanism for lepton flavor violation in μ and τ decays and μ→e conver...
We propose a new seesaw mechanism for neutrino masses within a class of supersymmetric SO(10) models...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
AbstractHigh energy accelerators may probe into the dark matter and the seesaw neutrino mass scales ...
We consider an extended supersymmetric SO(10) seesaw model with only doublet Higgs scalars, in which...
We study the Higgs sector of a SO(10) grand unified theory which predicts exact conservation of R-pa...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
AbstractWe revive Witten's mechanism for the radiative seesaw induced neutrino masses in SO(10) gran...
We discuss a class of left–right symmetric models where the light neutrino masses originate dominant...
We provide a scenario where naturally small and calculable neutrino masses arise from a supersymmetr...
AbstractWe discuss a class of left–right symmetric models where the light neutrino masses originate ...
The seesaw mechanism can explain why the neutrino masses are so tiny with respect to the charged fer...
Current neutrino oscillation data indicate the existence of two large lepton mixing angles, while Ko...
We study a new supersymmetric mechanism for lepton flavor violation in μ and τ decays and μ→e conver...
We propose a new seesaw mechanism for neutrino masses within a class of supersymmetric SO(10) models...
AbstractWe extend the Type I seesaw and suggest a new seesaw mechanism to generate neutrino masses w...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
AbstractHigh energy accelerators may probe into the dark matter and the seesaw neutrino mass scales ...
We consider an extended supersymmetric SO(10) seesaw model with only doublet Higgs scalars, in which...
We study the Higgs sector of a SO(10) grand unified theory which predicts exact conservation of R-pa...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
The dominance of Type-II seesaw mechanism for the neutrino masses has attracted considerable attenti...
AbstractWe revive Witten's mechanism for the radiative seesaw induced neutrino masses in SO(10) gran...
We discuss a class of left–right symmetric models where the light neutrino masses originate dominant...
We provide a scenario where naturally small and calculable neutrino masses arise from a supersymmetr...
AbstractWe discuss a class of left–right symmetric models where the light neutrino masses originate ...
The seesaw mechanism can explain why the neutrino masses are so tiny with respect to the charged fer...
Current neutrino oscillation data indicate the existence of two large lepton mixing angles, while Ko...
We study a new supersymmetric mechanism for lepton flavor violation in μ and τ decays and μ→e conver...