Genuine Dilatons in Gauge Theories
Abstract
A genuine dilaton allows scales to exist even in the limit of exact conformal invariance. In gauge theories, these may occur at an infrared fixed point (IRFP) through dimensional transmutation. These large scales at can be separated from small scales produced by , the trace of the energy-momentum tensor. For quantum chromodynamics (QCD), the conformal limit can be combined with chiral symmetry to produce chiral-scale perturbation theory PT, with as the dilaton. The technicolor (TC) analogue of this is crawling TC: at low energies, the gauge coupling goes directly to (but does not walk past) , and the massless dilaton at corresponds to a light Higgs boson at . It is suggested that the and bosons set the scale of the Higgs boson mass. Unlike crawling TC, in walking TC, produces scales, large and small, so it is hard to argue that its ``dilatonic'' candidate for the Higgs boson is not heavy.
Keywords
Cite
@article{arxiv.2003.11259,
title = {Genuine Dilatons in Gauge Theories},
author = {R. J. Crewther},
journal= {arXiv preprint arXiv:2003.11259},
year = {2020}
}
Comments
19 pages, 5 figures, version accepted by "Universe" (open access), special issue "Spontaneous Breaking of Conformal Symmetry". Expanded (3 more pages) and revised: abstract, text (especially Secs. 3 and 6), a new figure (Fig. 4), extra footnotes and references