arXiv:hep-lat/9208017·v1·High Energy Physics — Lattice
The triviality bound on the Higgs mass; its value and what it means
H. Neuberger🇺🇸 · U. M. Heller🇺🇸 · M. Klomfass🇺🇸 · P. Vranas🇺🇸
Abstract
Older lattice work exploring the Higgs mass triviality bound is briefly reviewed. It indicates that a strongly interacting scalar sector in the minimal standard model cannot exist; on the other hand low energy QCD phenomenology might be interpreted as an indication that it could. We attack this puzzle using the expansion and discover a simple criterion for selecting a lattice action that is more likely to produce a heavy Higgs particle. Depending on the precise form of the limitation put on the cutoff effects, our large calculations, when combined with old numerical data, suggest that the Higgs mass bound might be around 750 , which is higher than the previously obtained. Preliminary numerical work indicates that an increase of at least 19\% takes place at on the lattice when the old simple action is replaced with a new action (still containing only nearest neighbor interactions) if one uses the lattice spacing as the physical cutoff for both actions. It appears that, while a QCD like theory could produce , a meaningful ``minimal elementary Higgs'' theory cannot have . Still, even at 750 , the Higgs particle is so wide (GeV), that one cannot argue any more that the scalar sector is weakly coupled.
Comments: 8 pages. Latex file with 4 ps figures included. Preprint RU-92-22, SCRI-92-114