We show that a version of the nearly Minimal Supersymmetric Standard Model (nMSSM), extended only in the singlet sector to include the additional superfields of right-handed neutrinos and very heavy Dirac particles conserving B-L, admits a viable scenario for Dirac leptogenesis and naturally small Dirac neutrino masses. The origin of the (B-L)-conserving high singlet neutrino scale and the desired supersymmetry breaking terms is associated with dynamical supersymmetry breaking in the hidden sector
We study the constraints imposed by neutrino oscillation experiments on the minimal extensions of th...
The minimal supersymmetric standard model, when extended to embed the seesaw mechanism, obtains two ...
In this article, we demonstrate that the inclusion of right-handed neutrino superfields in the Next-...
We discuss how Dirac neutrinos can naturally be generated in supersymmetry and how they allow for an...
Dirac neutrinos with lepton-number-violating interactions can give rise to a new leptogenesis mechan...
We consider the Next to Minimal Supersymmetric Standard Model (NMSSM) which provides a natural solut...
We propose a new model for naturally realizing light Dirac neutrinos and explaining the baryon asymm...
Thermal leptogenesis in the canonical seesaw model in supersymmetry suffers from the incompatibility...
Thermal leptogenesis in the canonical seesaw model in supersymmetry suffers from the incompatibility...
Dirac leptogenesis (or Dirac neutrinogenesis), in which neutrinos are purely Dirac particles, is an ...
In the supersymmetric standard model of particle interactions, R-parity nonconservation is often inv...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
AbstractWe analyze a class of supersymmetric models first introduced by Arkani-Hamed et al. and Borz...
We propose a model for neutrino mass generation based on both the tree-level seesaw mechanism with a...
In this article, we demonstrate that the inclusion of right-handed neutrino superfields in the Next-...
We study the constraints imposed by neutrino oscillation experiments on the minimal extensions of th...
The minimal supersymmetric standard model, when extended to embed the seesaw mechanism, obtains two ...
In this article, we demonstrate that the inclusion of right-handed neutrino superfields in the Next-...
We discuss how Dirac neutrinos can naturally be generated in supersymmetry and how they allow for an...
Dirac neutrinos with lepton-number-violating interactions can give rise to a new leptogenesis mechan...
We consider the Next to Minimal Supersymmetric Standard Model (NMSSM) which provides a natural solut...
We propose a new model for naturally realizing light Dirac neutrinos and explaining the baryon asymm...
Thermal leptogenesis in the canonical seesaw model in supersymmetry suffers from the incompatibility...
Thermal leptogenesis in the canonical seesaw model in supersymmetry suffers from the incompatibility...
Dirac leptogenesis (or Dirac neutrinogenesis), in which neutrinos are purely Dirac particles, is an ...
In the supersymmetric standard model of particle interactions, R-parity nonconservation is often inv...
We propose an extension of the standard model (SM) by including a dark sector comprised of three gen...
AbstractWe analyze a class of supersymmetric models first introduced by Arkani-Hamed et al. and Borz...
We propose a model for neutrino mass generation based on both the tree-level seesaw mechanism with a...
In this article, we demonstrate that the inclusion of right-handed neutrino superfields in the Next-...
We study the constraints imposed by neutrino oscillation experiments on the minimal extensions of th...
The minimal supersymmetric standard model, when extended to embed the seesaw mechanism, obtains two ...
In this article, we demonstrate that the inclusion of right-handed neutrino superfields in the Next-...