New solution for dynamical symmetry breaking with top and bottom quark condensates
arXiv:hep-ph/9408357
Abstract
Starting from a general invariant interaction Lagrangian with four-fermion interactions between top and bottom quarks and working in the bubble approximation, we get a single Higgs as a bound state of quark pairs by allowing both and to be nonzero and the and states to mix. We find relations between the three four-fermion couplings and and show the new result that they may all be finite, with , where is the cutoff. Thus the dimensionless couplings correspond to strong interactions. Previous work with either one or more quark condensates found a fine-tuning condition giving O(). The Higgs mass is approximately the single-vev value , and the quark mass ratio is . There is a new symmetry of , corresponding to a flat direction in the space of composite states. Breaking this symmetry by turning on one small eigenvalue of the coupling matrix turns on the quark masses and introduces the massive Higgs state, so that is natural.
24pp, MAD/TH/94-2, RevTex