Scotogenic R\nuMDM at Three-Loop Level
arXiv:1502.07887
Abstract
We propose a model in which the radiative neutrino (Rν) masses are induced by fermion quintuplet and scalar septuplet fields from the minimal-dark-matter (MDM) setup. In conjunction with the 2HDM fields, on top of which our model is built, these hypercharge zero fields and additional scalar quintuplet lead to an accidental DM-protecting Z_2 symmetry and establish the R\nuMDM model at the three-loop level. We assess the potential for discovery of quintuplet fermions on present and future pp colliders.
LaTeX, 19 pages, refs added, version to appear in PLB
References in corpus (13)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- The low-scale approach to neutrino masses
- Fingerprinting non-minimal Higgs sectors
- TeV-scale Seesaw with Quintuplet Fermions
- A Model of Radiative Neutrino Mass: with or without Dark Matter
- Triviality and vacuum stability bounds in the three-loop neutrino mass model
- A Three-Loop Neutrino Model with Global Symmetry
- Critique of Fermionic R\nuMDM and its Scalar Variants
- The signatures of the quintuplet leptons at the LHC
- Charged Higgs boson in the Higgs channel at the Large Hadron Collider
- Masses of physical scalars in two Higgs doublet models
- Dark Matter Stability without New Symmetries