Connecting Dark Energy to Neutrinos with an Observable Higgs Triplet
arXiv:hep-ph/0602116 · doi:10.1016/j.physletb.2006.03.083
Abstract
To connect the scalar field (acceleron) responsible for dark energy to neutrinos, the usual strategy is to add unnaturally light neutral singlet fermions (right-handed neutrinos) to the Standard Model. A better choice is actually a Higgs triplet, through the coupling of the acceleron to the trilinear Higgs triplet-double-doublet interaction. This hypothesis predicts an easily observable doubly-charged Higgs boson at the forthcoming Large Hadron Collider (LHC).
9 pages
References in corpus (2)
Cited by in corpus (13)
- Flavour physics of leptons and dipole moments
- A model of electroweak-scale right-handed neutrino mass
- Testing neutrino masses in little Higgs models via discovery of doubly charged Higgs at LHC
- Predictive model for dark matter, dark energy, neutrino masses and leptogenesis at the TeV scale
- Dirac Neutrinos, Dark Energy and Baryon Asymmetry
- Unified picture for Dirac neutrinos, dark matter, dark energy and matter-antimatter asymmetry
- Consequences of a Pati-Salam unification of the electroweak-scale active model
- Neutrino Phenomenology, Dark Energy and Leptogenesis from pseudo-Nambu-Goldstone Bosons
- Left-Right Symmetric Model of Neutrino Dark Energy
- False Vacuum in the Supersymmetric Mass Varying Neutrinos Model
- The effect of supersymmetry breaking in the Mass Varying Neutrinos
- Implications of right-handed neutrinos with electroweak-scale masses
- Neutrino Condensate Dark Energy from TeV Scale Extra Dimensions