English

Non-universal gauge bosons $Z^{\prime}$ and rare top decays

High Energy Physics - Phenomenology 2009-11-10 v2

Abstract

We study a new method for detecting non-universal gauge bosons ZZ' via considering their effects on rare top decays. We calculate the contributions of the non-universal gauge bosons ZZ' predicted by topcolor-assisted technicolor (TC2) models and flavor-universal TC2 models on the rare top decays tcV(V=g,γ,Z)t\longrightarrow cV(V=g,\gamma,Z) and tclilj(li,lj=τ,μt\longrightarrow cl_{i}l_{j}(l_{i}, l_{j}=\tau, \mu, or e)e). We show that the branching ratios of these processes can be significantly enhanced. Over a sizable region of the parameter space, we have Br(tcg)105Br(t\longrightarrow cg)\sim10^{-5} and Br(tcττ)107Br(t\longrightarrow c\tau\tau)\sim10^{-7}, which may approach the observable threshold of near future experiments. Non-universal gauge bosons ZZ' may be detected via the rare top decay processes at the top-quark factories such as the CERN LHC.

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Cite

@article{arxiv.hep-ph/0309255,
  title  = {Non-universal gauge bosons $Z^{\prime}$ and rare top decays},
  author = {Chongxing Yue and Hongjie Zong and Lanjun Liu},
  journal= {arXiv preprint arXiv:hep-ph/0309255},
  year   = {2009}
}

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