English

Precision determination of $\alpha_s$ and $m_b$ from QCD sum rules for $b \overline b$.

High Energy Physics - Phenomenology 2015-06-25 v1

Abstract

The QCD sum rules for moments of production cross section of bbb \overline b states in e+ee^+\,e^- annihilation are extremely sensitive to the values of mbm_b and αs\alpha_s for moments of large order nn. This enables one to extract from the existing data on Υ\Upsilon resonances the values of these parameters with a high precision by using a non-relativistic expansion in 1/n1/n. It is found that the sum rules fit the data with αsMS(1GeV)=0.336±0.011\alpha_s^{\overline {MS}} (1 \, GeV) = 0.336 \pm 0.011 and mb=4827±7MeVm_b=4827 \pm 7 MeV, where the estimate of the errors includes the theoretical uncertainty due to subleading in 1/n1/n terms and the experimental uncertainty of the e+ee^+\,e^- annihilation cross section above the BBB \overline B threshold. The found value of αs\alpha_s, when evolved in two loops up to the ZZ mass, gives αsMS(MZ)=0.109±0.001\alpha_s^{\overline {MS}} (M_Z) = 0.109 \pm 0.001. The bb quark mass mbm_b corresponds to the `on shell' value appropriate for one-loop perturbative calculations.

Cite

@article{arxiv.hep-ph/9502224,
  title  = {Precision determination of $\alpha_s$ and $m_b$ from QCD sum rules for $b \overline b$.},
  author = {M. B. Voloshin},
  journal= {arXiv preprint arXiv:hep-ph/9502224},
  year   = {2015}
}

Comments

15 pages + 4 figures in LaTeX (FEYNMAN macros used for Fig.3)