English

Implications of the recent CERN LEP data on nonuniversal interactions with the precision electroweak tests

High Energy Physics - Phenomenology 2009-10-30 v1

Abstract

We explore the nonuniversal interaction effects in terms of the precision variables epsilons with the recent LEP data reported by the Electroweak Working Group. The epsilon variables with the nonuniversal interactions are calculated and constrained by the experimental ellipses in the ϵ1\epsilon_1--ϵb\epsilon_b, ϵ2\epsilon_2--ϵb\epsilon_b, and ϵ3\epsilon_3--ϵb\epsilon_b planes. We find that the new data enables us to make a stringent test on the correction to ZbbˉZ \to b \bar{b} vertex. The ϵb\epsilon_b variable is sensitive to the ZbbˉZ b \bar b couplings and thus plays a major role to give constraints on the nonuniversal interaction effects. Upon imposing the new data on ϵb\epsilon_b, we have the allowed range of the model parameter κL=0.0063±0.0030\kappa_L = 0.0063 \pm 0.0030 at 1-σ\sigma level with mt=175m_t = 175 GeV. Along with the minimal contact term, we predict the new physics scale Λ\Lambda \sim 1.6 TeV. By combining the experimental results from all planes we obtain the allowed range of κL\kappa_L : 0.003<κL<0.0100.003 < \kappa_L < 0.010 at 95 % C.L..

Keywords

Cite

@article{arxiv.hep-ph/9710478,
  title  = {Implications of the recent CERN LEP data on nonuniversal interactions with the precision electroweak tests},
  author = {Kang Young Lee},
  journal= {arXiv preprint arXiv:hep-ph/9710478},
  year   = {2009}
}

Comments

17 pages (including figs), ReVTeX, 5 .eps figs are included, to appear in Phys. Rev. D

R2 v1 2026-07-22T14:40:08.803Z