We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming that the neutrinos are Dirac (i.e. B–L is an exact symmetry), we found a simultaneous solution for non zero neutrino masses and dark matter content of the universe. The observed baryon asymmetry of the universe is also explained using Dirac Leptogenesis, which is assisted by a dark sector, gauged under a U(1)D symmetry. The latter symmetry of the dark sector is broken at a TeV scale and thereby giving mass to a neutral gauge boson ZD. The standard model Z-boson mixes with the gauge boson ZD at one loop level and paves a way to detect the dark matter through spin independent elastic scattering at terrestrial laboratories
The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the dark matter...
We propose a new model for naturally realizing light Dirac neutrinos and explaining the baryon asymm...
Abstract The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the da...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
AbstractWe propose a unified scenario to generate the masses of Dirac neutrinos and cold dark matter...
We present a gauged baryon number model as an example of models where all new fermions required to c...
We provide a generic framework to obtain stable dark matter along with naturally small Dirac neutrin...
We explore a gauged $U(1)_{B-L}$ extension of standard model with inclusion of three right-handed ne...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
We explore a new origin of neutrino dark energy and baryon asymmetry in the universe. The neutrinos ...
AbstractWe present a scenario where neutrino masses and Dark Matter are related due to a global U(1)...
金沢大学理工研究域数物科学系We propose a unified explanation for the origin of dark matter and baryon number asymm...
We show that the extension of the standard model by three right-handed neutrinos with masses smaller...
AbstractA possible extension of the Standard Model to include lepton number as local gauge symmetry ...
The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the dark matter...
We propose a new model for naturally realizing light Dirac neutrinos and explaining the baryon asymm...
Abstract The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the da...
We propose an extension of the standard model with U(1)B–L×Z2 symmetry. In this model by assuming th...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
AbstractWe propose a unified scenario to generate the masses of Dirac neutrinos and cold dark matter...
We present a gauged baryon number model as an example of models where all new fermions required to c...
We provide a generic framework to obtain stable dark matter along with naturally small Dirac neutrin...
We explore a gauged $U(1)_{B-L}$ extension of standard model with inclusion of three right-handed ne...
AbstractWe propose a simple Δ(27)⊗Z4 model where neutrinos are predicted to be Dirac fermions. The s...
We explore a new origin of neutrino dark energy and baryon asymmetry in the universe. The neutrinos ...
AbstractWe present a scenario where neutrino masses and Dark Matter are related due to a global U(1)...
金沢大学理工研究域数物科学系We propose a unified explanation for the origin of dark matter and baryon number asymm...
We show that the extension of the standard model by three right-handed neutrinos with masses smaller...
AbstractA possible extension of the Standard Model to include lepton number as local gauge symmetry ...
The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the dark matter...
We propose a new model for naturally realizing light Dirac neutrinos and explaining the baryon asymm...
Abstract The Standard Model (SM) is inadequate to explain the origin of tiny neutrino masses, the da...