English

The Effective Fine Structure Constant at TESLA Energies

High Energy Physics - Phenomenology 2007-05-23 v1

Abstract

We present a new estimate of the hadronic contribution to the shift in the fine structure constant at LEP and TESLA energies and calculate the effective fine structure constant. Substantial progress in a precise determination of this important parameter is a consequence of substantially improved total cross section measurements by the BES II collaboration and an improved theoretical understanding. In the standard approach which relies to a large extend on experimental data we find Δ\alhadrons(5)(\mz)=0.027896±0.000395\Delta \al_{\rm hadrons}^{(5)}(\mz) = 0.027896 \pm 0.000395 which yields α1(\mz)=128.907±0.054\alpha^{-1}(\mz) = 128.907 \pm 0.054. Another approach, using the Adler function as a tool to compare theory and experiment, allows us to to extend the applicability of perturbative QCD in a controlled manner. The result in this case reads Δαhad(5)(MZ2)=0.027730±0.000209\Delta\alpha^{(5)}_{\rm had}(M_Z^2) = 0.027730 \pm 0.000209 and hence α1(\mz)=128.930±0.029\alpha^{-1}(\mz) = 128.930 \pm 0.029. At TESLA energies a new problem shows up with the definition of an effective charge. A possible solution of the problem is presented. Prospects for further progress in a precise determination of the effective fine structure constant are discussed.

Keywords

Cite

@article{arxiv.hep-ph/0105283,
  title  = {The Effective Fine Structure Constant at TESLA Energies},
  author = {F. Jegerlehner},
  journal= {arXiv preprint arXiv:hep-ph/0105283},
  year   = {2007}
}

Comments

21 pages 6 figures 2 tables

R2 v1 2026-07-22T13:34:10.852Z