Stabilization of the Electroweak Scale in 3-3-1 Models
arXiv:0908.2472 · doi:10.1103/PhysRevD.80.056007
Abstract
One way of avoiding the destabilization of the electroweak scale through a strong coupled regime naturally occurs in models with a Landau-like pole at the TeV scale. Hence, the quadratic divergence contributions to the scalar masses are not considered as a problem anymore since a new nonperturbative dynamic emerges at the TeV scale. This scale should be an intrinsic feature of the models and there is no need to invoke any other sort of protection for the electroweak scale. In some models based on the gauge symmetry, a nonperturbative dynamics arise and it stabilizes the electroweak scale.
10 pages. Version with some improvements and corrections in the text
References in corpus (6)
- Conformal Symmetry and the Standard Model
- Extra Neutral Gauge Boson from Two Versions of the 3-3-1 Model in Future Linear Colliders
- Bilepton effects on the WWV^* vertex in the 331 model with right-handed neutrinos via a SU_L(2)XU_Y(1) covariant quantization scheme
- Charged Bilepton Pair Production at LHC Including Exotic Quark Contribution
- Decays Z --> ggg and Z-prime --> ggg in the minimal 331 model
- Searching for vector bileptons in polarized Bhabha scattering