English

MS vs. Pole Masses of Gauge Bosons: Electroweak Bosonic Two-Loop Corrections

High Energy Physics - Phenomenology 2010-04-05 v3

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 RξR_\xi 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 sin2θW\sin^2\theta_W and mass ratio mZ2/mH2m_Z^2/m_H^2. As a byproduct we obtain the bosonic two-loop contributions to the renormalization of the weak mixing parameter sin2θW\sin^2\theta_W and of the Fermi constant. The running of Fermi constant will become important at high energy colliders.

Keywords

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