A Dyson-Schwinger study of the four-gluon vertex
Abstract
We present a self-consistent calculation of the four-gluon vertex of Landau gauge Yang--Mills theory from a truncated Dyson--Schwinger equation. The equation contains the leading diagrams in the ultraviolet and is solved using as the only input results for lower Green functions from previous Dyson--Schwinger calculations that are in good agreement with lattice data. All quantities are therefore fixed and no higher Green functions enter within this truncation. Our self-consistent solution resolves the full momentum dependence of the vertex but is limited to the tree-level tensor structure at the moment. Calculations of selected dressing functions for other tensor structures from this solution are used to exemplify that they are suppressed compared to the tree-level structure except for possible logarithmic enhancements in the deep infrared. Our results furthermore allow one to extract a qualitative fit for the vertex and a running coupling.
Keywords
Cite
@article{arxiv.1408.5409,
title = {A Dyson-Schwinger study of the four-gluon vertex},
author = {Anton K. Cyrol and Markus Q. Huber and Lorenz von Smekal},
journal= {arXiv preprint arXiv:1408.5409},
year = {2015}
}
Comments
23 pages, 14 figs.; more detailed discussion of renormalization, version accepted by EPJC