2017/12/22 by Zoltan Fodor, Kieran Holland, Julius Kuti +2 · 38 citations
Physics and Astronomy · #Black Holes and Theoretical Physics #Dilaton #Fermion #Gauge symmetry #Gauge theory #Global symmetry #Massless particle #Particle physics theoretical and experimental studies #Quantum Chromodynamics and Particle Interactions #Scalar (mathematics) #Symmetry breaking #hep-lat #hep-ph
paper · pdf · doi:10.1051/epjconf/201817508015
published in EPJ Web of Conferences 175, 08015 (EDP Sciences) · 14 pages, 10 figures; Proceedings of the 35th International Symposium on Lattice Field Theory, 18-24 June 2017, Granada, Spain
arxiv created 2017/12/22 · openalex publication_date 2018/01/01 · openalex created_date 2018/01/05 · arxiv updated 2018/04/18 · openalex updated_date 2026/08/06
We discuss near-conformal gauge theories beyond the standard model (BSM) where interesting results on the twelve-flavor β-function of massless fermions in the fundamental representation of the SU(3) color gauge group and dilaton tests of the light scalar with two massless fermions in the two-index symmetric tensor (sextet) representation can be viewed as parts of the same BSM paradigm under investigation. The clear trend in the decreasing size of β-functions at fixed renormalized gauge coupling is interpreted as a first indicator how the conformal window (CW) is approached in correlation with emergent near-conformal light scalars. BSM model building close to the CW will be influenced by differing expectations on the properties of the emergent light 0++ scalar either as a σ-particle of chiral symmetry breaking ( Χ S B), or as a dilaton of scale symmetry breaking. The twelve-flavor β-function emerges as closest to the CW, perhaps near-conformal, or perhaps with an infrared fixed point (IRFP) at some unexplored strong coupling inside the CW. It is premature to speculate on dilaton properties of the twelveflavor model since the near-conformal realization remains an open question. However, it is interesting and important to investigate dilaton tests of the light sextet scalar whose β-function is closest to the CW in the symmetry breaking phase and emerges as the leading candidate for dilaton tests of the light scalar. We report results from high precision analysis of the twelve-flavor β-function [1] refuting its published IRFP [2, 3]. We present our objections to recent claims [4, 5] for non-universal behavior of staggered fermions used in our analysis. We also report our first analysis of dilaton tests of the light 0 ++ scalar in the sextet model and comment on related post-conference developments. The dilaton test is the main thrust of this conference contribution including presentation #405 on the n f = 12 β-function and presentation #260 on dilaton tests of the sextet model. They are both selected from the near-conformal BSM paradigm.