Radiative Electroweak Symmetry-Breaking Revisited
Abstract
In the absence of a tree-level scalar-field mass, renormalization-group methods permit the explicit summation of leading-logarithm contributions to all orders of the perturbative series within the effective potential for electroweak symmetry. This improvement of the effective potential function is seen to reduce residual dependence on the renormalization mass scale. The all-orders summation of leading logarithm terms involving the dominant three couplings contributing to radiative corrections is suggestive of a potential characterized by a plausible Higgs boson mass of 216 GeV. However, the tree potential's local minimum at is restored if QCD is sufficiently strong.
Keywords
Cite
@article{arxiv.hep-ph/0304153,
title = {Radiative Electroweak Symmetry-Breaking Revisited},
author = {V. Elias and R. B. Mann and D. G. C. McKeon and T. G. Steele},
journal= {arXiv preprint arXiv:hep-ph/0304153},
year = {2009}
}
Comments
revtex, 4 pages, 1 eps figure embedded in manuscript. Updated version contains additional comments and corrects minor errors