An effective Lagrangian approach for unstable particles
Abstract
We propose a novel procedure for handling processes that involve unstable intermediate particles. By using gauge-invariant effective Lagrangians it is possible to perform a gauge-invariant resummation of (arbitrary) self-energy effects. For instance, gauge-invariant tree-level amplitudes can be constructed with the decay widths of the unstable particles properly included in the propagators. In these tree-level amplitudes modified vertices are used, which contain extra gauge-restoring terms prescribed by the effective Lagrangians. We discuss the treatment of the phenomenologically important unstable particles, like the top-quark, the - and -bosons, and the Higgs-boson, and derive the relevant modified Feynman rules explicitly.
Cite
@article{arxiv.hep-ph/9909472,
title = {An effective Lagrangian approach for unstable particles},
author = {W. Beenakker and F. A. Berends and A. P. Chapovsky},
journal= {arXiv preprint arXiv:hep-ph/9909472},
year = {2011}
}
Comments
32 pages, LaTeX2e (uses axodraw.sty); Eq. (B.6) corrected, references added