MS vs. Pole Masses of Gauge Bosons: Electroweak Bosonic Two-Loop Corrections
Abstract
The relationship between MS and pole masses of the vector bosons Z and W is calculated at the two-loop level in the Standard Model. We only consider the purely bosonic contributions which represents a gauge invariant subclass of diagrams. All calculations were performed in the linear gauge with three arbitrary gauge parameters utilizing the method of asymptotic expansions. The results are presented in analytic form as series in the small parameters and mass ratio . As a byproduct we obtain the bosonic two-loop contributions to the renormalization of the weak mixing parameter and of the Fermi constant. The running of Fermi constant will become important at high energy colliders.
Cite
@article{arxiv.hep-ph/0105304,
title = {MS vs. Pole Masses of Gauge Bosons: Electroweak Bosonic Two-Loop Corrections},
author = {F. Jegerlehner and M. Yu. Kalmykov and O. Veretin},
journal= {arXiv preprint arXiv:hep-ph/0105304},
year = {2010}
}
Comments
LaTeX, 36 p., 10 fig.; in v3 more technical details about renormalization procedure are added