Abstract A minimal extension of the left-right symmetric model for neutrino masses that includes a vector-like singlet fermion dark matter (DM) is presented with the DM connected to the visible sector via a gauged U(1) portal. We discuss the symmetry breaking in this model and calculate the mass and mixings of the extra heavy neutral gauge boson at the TeV scale. The extra gauge boson can decay to both standard model particles as well to dark matter. We calculate the relic density of the singlet fermion dark matter and its direct detection cross section and use these constraints to obtain the allowed parameter range for the new gauge coupling and the dark matter mass
Abstract An alternative left–right model of quarks and leptons, where the $$SU(2)_R$$ SU(2)R lepton ...
In this work, we propose minimal realizations for generating Dirac neutrino masses in the context of...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
Abstract We present a minimal extension of the left-right symmetric model based on the gauge group S...
AbstractWe discuss singlet fermion dark matter within a left-right symmetric model promoting baryon ...
We study the $B-L$ gauge extension of the Standard Model which contains a singlet scalar and three r...
We study the $B-L$ gauge extension of the Standard Model which contains a singlet scalar and three r...
We consider a dark matter scenario in the context of the minimal extension of the Standard Model (SM...
We propose and study a novel extension of the Standard Model based on the B-L gauge symmetry that ca...
In a bid to simultaneous explanation of dark matter (DM) and tiny but non-zero masses of left-handed...
In an endeavor to explain the light neutrino masses and dark matter (DM) simultaneously, we study a ...
We consider an incarnation of left-right symmetric model with a local gauge symmetry of $SU(3)_C \ot...
We show that left-right symmetric models can easily accommodate stable TeV-scale dark matter particl...
Abstract We consider a simple extension of the minimal left-right symmetric model (LRSM) in order to...
We study a simple extension of the standard model where the gauge group is extended by an additional...
Abstract An alternative left–right model of quarks and leptons, where the $$SU(2)_R$$ SU(2)R lepton ...
In this work, we propose minimal realizations for generating Dirac neutrino masses in the context of...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
Abstract We present a minimal extension of the left-right symmetric model based on the gauge group S...
AbstractWe discuss singlet fermion dark matter within a left-right symmetric model promoting baryon ...
We study the $B-L$ gauge extension of the Standard Model which contains a singlet scalar and three r...
We study the $B-L$ gauge extension of the Standard Model which contains a singlet scalar and three r...
We consider a dark matter scenario in the context of the minimal extension of the Standard Model (SM...
We propose and study a novel extension of the Standard Model based on the B-L gauge symmetry that ca...
In a bid to simultaneous explanation of dark matter (DM) and tiny but non-zero masses of left-handed...
In an endeavor to explain the light neutrino masses and dark matter (DM) simultaneously, we study a ...
We consider an incarnation of left-right symmetric model with a local gauge symmetry of $SU(3)_C \ot...
We show that left-right symmetric models can easily accommodate stable TeV-scale dark matter particl...
Abstract We consider a simple extension of the minimal left-right symmetric model (LRSM) in order to...
We study a simple extension of the standard model where the gauge group is extended by an additional...
Abstract An alternative left–right model of quarks and leptons, where the $$SU(2)_R$$ SU(2)R lepton ...
In this work, we propose minimal realizations for generating Dirac neutrino masses in the context of...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...