Fine-tuning the low-energy physics
arXiv:hep-ph/9704446 · doi:10.1142/S021773230000133X
Abstract
In this article we discuss the problem of the extreme fine-tuning necessary to achieve the top quark mass scale within the dynamical symmetry breaking of the phenomenological condensate model. Inspired by the vector-like phenomenon of chiral gauge theories at short distances, we postulate that the -gauge bosons possess a vector-like gauge coupling and contribute to the gap-equations of quark self-energy functions in the high-energy region. We find that the gap-equations of different charge sectors are coupled, and as a result the unnatural fine-tuning is overcome and the ratio of the top and bottom masses is related to the electric charge: , provided the quadratic divergence is removed by setting the four-fermion coupling .
13 pages LaTex
Cited by in corpus (5)
- Top quark condensation
- Vectorlike -boson coupling at TeV and third family fermion masses
- Why is the top quark much heavier than other fermions?
- Phenomenology at the LHC of composite particles from strongly interacting Standard Model fermions via four-fermion operators of NJL type
- Hierarchy spectrum of SM fermions: from top quark to electron neutrino