arXiv:hep-lat/9212026·v1·High Energy Physics — Lattice
Can the Couplings in the Fermion-Higgs Sector of the Standard Model be Strong?
Wolfgang Bock🇳🇱 · Christoph Frick🇩🇪 · Jan Smit🇳🇱 · Jeroen C. Vink🇩🇪
Abstract
We present results for the renormalized quartic self-coupling and the Yukawa coupling in a lattice fermion-Higgs model with two SU(2) doublets, mostly for large values of the bare couplings. One-component (`reduced') staggered fermions are used in a numerical simulation with the Hybrid Monte Carlo algorithm. The fermion and Higgs masses and the renormalized scalar field expectation value are computed on lattices, where ranges from to . In the scaling region these quantities are found to have a dependence, which is used to determine their values in the infinite volume limit. We then calculate the and from their tree level definitions in terms of the masses and renormalized scalar field expectation value, extrapolated to infinite volume. The scalar field propagators can be described for momenta up to the cut-off by one fermion loop renormalized perturbation theory and the results for and come out to be close to the tree level unitarity bounds. There are no signs that are in contradiction with the triviality of the Yukawa and quartic self-coupling.
Comments: 36 pages + 12 postscript figures (appended), Amsterdam ITFA 92-23, HLRZ Juelich 92-58, UCSD/PTH 92-38