English

O(\alpha_s) QCD Corrections to Spin Correlations in $e^- e^+ \to t \bar t$ process at the NLC

High Energy Physics - Phenomenology 2011-03-23 v2

Abstract

Using a Generic spin basis, we present a general formalism of one-loop radiative corrections to the spin correlations in the top quark pair production at the Next Linear Collider, and calculate the O(\alpha_s) QCD corrections under the soft gluon approximation. We find that: (a) in Off-diagonal basis, the O(αs)O(\alpha_s) QCD corrections to eLe+e_L^- e^+ (eRe+e_R^- e^+) scattering process increase the differential cross sections of the dominant spin component ttˉt_{\uparrow}\bar{t}_{\downarrow} (ttˉt_{\downarrow}\bar{t}_{\uparrow}) by 30\sim 30% and (0.1\sim (0.1%-3%) depending on the scattering angle for s=400GeV\sqrt{s}=400 GeV and 1 TeV, respectively; (b) in {Off-diagonal basis} (Helicity basis), the dominant spin component makes up 99.8% (53\sim 53%) of the total cross section at both tree and one-loop level for s=400GeV\sqrt{s}=400 GeV, and the Off-diagonal basis therefore remains to be the optimal spin basis after the inclusion of O(αs)O(\alpha_s) QCD corrections.

Keywords

Cite

@article{arxiv.hep-ph/9901205,
  title  = {O(\alpha_s) QCD Corrections to Spin Correlations in $e^- e^+ \to t \bar t$ process at the NLC},
  author = {Hong Xuan Liu and Chong Sheng Li and Zhen Jun Xiao},
  journal= {arXiv preprint arXiv:hep-ph/9901205},
  year   = {2011}
}

Comments

12 pages, 4 figures, revised version (a few print mistakes are corrected, some numerical results are modified, and Fig.4 is added)