English

On the Significance of the Electroweak Precision Data

High Energy Physics - Phenomenology 2009-10-28 v1

Abstract

We elaborate on a recently suggested effective Lagrangian for charged-current and neutral-current electroweak interactions which in comparison with the standard electroweak theory contains three free parameters Δx,Δy\Delta x, \Delta y, ε\varepsilon which quantify different sources for violations of SU(2)SU(2) symmetry. Within the standard SU(2)I×U(1)YSU(2)_I \times U(1)_Y electroweak theory, we present both exact and very much refined approximate analytical one-loop expressions for these parameters in terms of the canonical input, Gμ,\MZG_\mu, \MZ, \alpz\alpz, the top-quark mass, \Mt\Mt, and the Higgs-boson mass, \MH\MH. We reemphase the importance of discriminating between the {\it empirically well-known purely fermionic} (vacuum polarization) contributions to Δx,Δy\Delta x, \Delta y, ε\varepsilon and the {\it empirically unknown bosonic} ones with respect to present and future electroweak precision tests. The parameters Δx\Delta x and ε\varepsilon are hardly affected by standard bosonic corrections, while the full one-loop results for Δy\Delta y differ appreciably from the ones obtained by taking into account fermion loops only. A detailed comparison with the experimental data on \MWpm/\MZ\MWpm/\MZ, \swˉ2\bar\sw^2, Γl\Gamma_l shows that these data start to become accurate enough to be sensitive to standard (bosonic) contributions to Δy\Delta y beyond fermion loops.

Cite

@article{arxiv.hep-ph/9404306,
  title  = {On the Significance of the Electroweak Precision Data},
  author = {S. Dittmaier and D. Schildknecht and K. Kolodziej and M. Kuroda},
  journal= {arXiv preprint arXiv:hep-ph/9404306},
  year   = {2009}
}

Comments

23 pages LATEX, 6 figures appended in uuencoded form; Bielefeld preprint BI-TP 94/09