On the Significance of the Electroweak Precision Data
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 , which quantify different sources for violations of symmetry. Within the standard electroweak theory, we present both exact and very much refined approximate analytical one-loop expressions for these parameters in terms of the canonical input, , , the top-quark mass, , and the Higgs-boson mass, . We reemphase the importance of discriminating between the {\it empirically well-known purely fermionic} (vacuum polarization) contributions to , and the {\it empirically unknown bosonic} ones with respect to present and future electroweak precision tests. The parameters and are hardly affected by standard bosonic corrections, while the full one-loop results for differ appreciably from the ones obtained by taking into account fermion loops only. A detailed comparison with the experimental data on , , shows that these data start to become accurate enough to be sensitive to standard (bosonic) contributions to 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