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Fine-tuning the low-energy physics

High Energy Physics - Phenomenology 2016-09-06 v1

Abstract

In this article we discuss the problem of the extreme fine-tuning necessary to achieve the top quark mass scale mtm_t within the dynamical symmetry breaking of the phenomenological ttˉt \bar t condensate model. Inspired by the vector-like phenomenon of chiral gauge theories at short distances, we postulate that the W±W^\pm-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: (mbmt)2α3π({m_b\over m_t})^2\simeq {\alpha\over3\pi}, provided the quadratic divergence is removed by setting the four-fermion coupling G=4+o(mb2mt2)G=4+o({m_b^2\over m_t^2}).

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Cite

@article{arxiv.hep-ph/9704446,
  title  = {Fine-tuning the low-energy physics},
  author = {She-Sheng Xue},
  journal= {arXiv preprint arXiv:hep-ph/9704446},
  year   = {2016}
}

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