English

On the Dynamical Symmetry Breaking of the Electroweak Interactions by the Top Quark

High Energy Physics - Phenomenology 2011-01-13 v2

Abstract

We discuss the electroweak gauge symmetry breaking triggered by a new strong attractive interaction to condensate fermion-antifermion, and topcolor is a prototype. To deal with the fermion pairing, a general method based on the Hubbard-Stratonovich transformation in the functional integral approach is used. We derive a formula which relates the W±W^\pm, Z0Z^0 weak boson masses to that of the condensated fermion, thus generalizing the Pagels-Stokar formula obtained in QCD. The custodial SU(2) electroweak symmetry turns out to be systematically violated, the deviation of ρMW2/(MZ2cos2θW)\rho\equiv M_W^2/(M_Z^2\cos^2\theta_W) from unity is related to the new physics scale Λ\Lambda. Some phenomenological consequences of the top-pair condensation models are discussed. Distinctive signatures of the tˉt\bar{t}t scalar bound state, a Higgs boson like denoted by HtH_t, are the dominant decay modes HtΥ+γ,H_t\to \Upsilon +\gamma , HtΥ+Z0H_t\to \Upsilon +Z^0, and HtB+BˉH_t \to B^* +\bar{B}^*.

Keywords

Cite

@article{arxiv.hep-ph/9910430,
  title  = {On the Dynamical Symmetry Breaking of the Electroweak Interactions by the Top Quark},
  author = {V. H. Nguyen and X. Y. Pham},
  journal= {arXiv preprint arXiv:hep-ph/9910430},
  year   = {2011}
}

Comments

Latex2e 9 pages, 2 postscript figures, 1 postscript logo