Inverse Seesaw Neutrino Mass from Lepton Triplets in the U(1)_Sigma Model
arXiv:0905.2972 · doi:10.1142/S0217732309031867
Abstract
The inverse seesaw mechanism of neutrino mass, i.e. m_nu = (m_D^2/m_N^2)epsilon_L where epsilon_L is small, is discussed in the context of the U(1)_Sigma model. This is a gauge extension of the Standard Model of particle interactions with lepton triplets (Sigma^+,Sigma^),Sigma^-) as (Type III) seesaw anchors for obtaining small Majorana neutrino masses.
7 pages, no figure
References in corpus (11)
- Distinguishing seesaw models at LHC with multi-lepton signals
- Type-III see-saw at LHC
- Probing seesaw at LHC
- Electroweak scale seesaw and heavy Dirac neutrino signals at LHC
- Fermion Triplet Dark Matter and Radiative Neutrino Mass
- Radiative Inverse Seesaw: Verifiable New Mechanism of Neutrino Mass
- A Supersymmetric U(1)' Model with Multiple Dark Matters
- Lightest U-parity Particle (LUP) dark matter
- Supersymmetric U(1) Gauge Realization of the Dark Scalar Doublet Model of Radiative Neutrino Mass
- -GMSB with Type III Seesaw and Phenomenology
- B and not L in supersymmetry: new U(1) gauge symmetry and dark matter
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- Triplet Scalar Dark Matter and Leptogenesis in an Inverse See-Saw Model of Neutrino Mass Generation
- Unitarity violation in sequential neutrino mixing in a model of extra dimensions
- The Two Scales of New Physics in Higgs Couplings
- Seesaw Models under the Lens of Angular Distributions at and Colliders