The quark-gluon vertex in Landau gauge bound-state studies
Abstract
We present a practical method for the solution of the quark-gluon vertex for use in Bethe--Salpeter and Dyson--Schwinger calculations. The efficient decomposition into the necessary covariants is detailed, with the numerical algorithm outlined for both real and complex Euclidean momenta. A truncation of the quark-gluon vertex, that neglects explicit back-coupling to enable the application to bound-state calculations, is given together with results for the quark propagator and quark-gluon vertex for different quark flavours. The relative impact of the various components of the quark-gluon vertex is highlighted with the flavour dependence of the effective quark-gluon interaction obtained, thus providing insight for the construction of phenomenological models within Rainbow-Ladder. Finally, we solve the corresponding Green's functions for complex Euclidean momenta as required in future bound-state calculations.
Keywords
Cite
@article{arxiv.1404.2545,
title = {The quark-gluon vertex in Landau gauge bound-state studies},
author = {Richard Williams},
journal= {arXiv preprint arXiv:1404.2545},
year = {2015}
}
Comments
14 pages, 12 figures. Version to appear in EPJA