We propose a new motivation for the stability of dark matter (DM). We suggest that the same non-Abelian discrete flavor symmetry which accounts for the observed pattern of neutrino oscillations, spontaneously breaks to a Z(2) subgroup which renders DM stable. The simplest scheme leads to a scalar doublet DM potentially detectable in nuclear recoil experiments, inverse neutrino mass hierarchy, hence a neutrinoless double beta decay rate accessible to upcoming searches, while theta(13) = 0 gives no CP violation in neutrino oscillations
AbstractWe investigate an extension of the Minimal Standard Model by right-handed neutrinos (the νMS...
If the standard model of particle interactions is extended to include a second scalar doublet [H+,(H...
Dark and baryonic matter contribute comparable energy density to the present Universe. The dark matt...
It is proposed that dark matter is the origin of neutrino mass, thereby linking inexorably two undis...
AbstractWe present a model based on the A4 non-Abelian discrete symmetry leading to a predictive fiv...
We investigate a model in which Dark Matter is stabilized by means of a Z(2) parity that results fro...
We propose a flavor symmetric approach to unify the origin of dark matter (DM) with the nonzero θ13 ...
Dark matter is postulated to transform under the non-Abelian $SU(2)_D$ gauge symmetry. Its connectio...
AbstractTo connect the scalar field (acceleron) responsible for dark energy to neutrinos, the usual ...
AbstractThe scotogenic model of radiative neutrino mass with Z2 or U(1)D dark matter is shown to acc...
The hierarchy in scale between atmospheric and solar neutrino mass splittings is investigated throug...
We propose a minimal extension of the standard model by including a U(1) flavor symmetry to establis...
We propose a new model to explain the neutrino masses, the dark energy and the baryon asymmetry alto...
To connect the scalar field (acceleron) responsible for dark energy to neutrinos, the usual strategy...
AbstractBy extending the SM with two scalar singlets, a vector-like fermion doublet and a fermion si...
AbstractWe investigate an extension of the Minimal Standard Model by right-handed neutrinos (the νMS...
If the standard model of particle interactions is extended to include a second scalar doublet [H+,(H...
Dark and baryonic matter contribute comparable energy density to the present Universe. The dark matt...
It is proposed that dark matter is the origin of neutrino mass, thereby linking inexorably two undis...
AbstractWe present a model based on the A4 non-Abelian discrete symmetry leading to a predictive fiv...
We investigate a model in which Dark Matter is stabilized by means of a Z(2) parity that results fro...
We propose a flavor symmetric approach to unify the origin of dark matter (DM) with the nonzero θ13 ...
Dark matter is postulated to transform under the non-Abelian $SU(2)_D$ gauge symmetry. Its connectio...
AbstractTo connect the scalar field (acceleron) responsible for dark energy to neutrinos, the usual ...
AbstractThe scotogenic model of radiative neutrino mass with Z2 or U(1)D dark matter is shown to acc...
The hierarchy in scale between atmospheric and solar neutrino mass splittings is investigated throug...
We propose a minimal extension of the standard model by including a U(1) flavor symmetry to establis...
We propose a new model to explain the neutrino masses, the dark energy and the baryon asymmetry alto...
To connect the scalar field (acceleron) responsible for dark energy to neutrinos, the usual strategy...
AbstractBy extending the SM with two scalar singlets, a vector-like fermion doublet and a fermion si...
AbstractWe investigate an extension of the Minimal Standard Model by right-handed neutrinos (the νMS...
If the standard model of particle interactions is extended to include a second scalar doublet [H+,(H...
Dark and baryonic matter contribute comparable energy density to the present Universe. The dark matt...