Asymptotically free scaling solutions in nonabelian Higgs models
Abstract
We construct asymptotically free renormalization group trajectories for the generic nonabelian Higgs model in four-dimensional spacetime. These ultraviolet-complete trajectories become visible by generalizing the renormalization/boundary conditions in the definition of the correlation functions of the theory. Though they are accessible in a controlled weak-coupling analysis, these trajectories originate from threshold phenomena which are missed in a conventional perturbative analysis relying on the deep Euclidean region. We identify a candidate three-parameter family of renormalization group trajectories interconnecting the asymptotically free ultraviolet regime with a Higgs phase in the low-energy limit. We provide estimates of their low-energy properties in the light of a possible application to the standard model Higgs sector. Finally, we find a two-parameter subclass of asymptotically free Coleman-Weinberg-type trajectories that do not suffer from a naturalness problem.
Keywords
Cite
@article{arxiv.1502.05907,
title = {Asymptotically free scaling solutions in nonabelian Higgs models},
author = {Holger Gies and Luca Zambelli},
journal= {arXiv preprint arXiv:1502.05907},
year = {2015}
}
Comments
6 pages, 2 figures. One section added. Updated to match the published version