arXiv:hep-ph/0411161·v2·High Energy Physics — Phenomenology
Higher Order Stability of a Radiatively Induced 220 GeV Higgs Mass
V. Elias🇨🇦 · R. B. Mann🇨🇦 · D.G.C. McKeon🇨🇦 · T.G. Steele🇨🇦
Abstract
The effective potential for radiatively broken electroweak symmetry in the single Higgs doublet Standard Model is explored to four sequentially subleading logarithm-summation levels (5-loops) in the dominant Higgs self-interaction couplant . We augment these results with all contributing leading logarithms in the remaining large but sub-dominant Standard Model couplants (t-quark, QCD and gauge couplants) as well as next to leading logarithm contributions from the largest of these, the t-quark and QCD couplants. Order-by-order stability is demonstrated for earlier leading logarithm predictions of an order 220 GeV Higgs boson mass in conjunction with fivefold enhancement of the value for over that anticipated from conventional spontaneous symmetry breaking.
Comments: revtex, 6 pages. Analysis and text is expanded in revised version