Results and techniques for higher order calculations within the gradient-flow formalism
Abstract
We describe in detail the implementation of a systematic perturbative approach to observables in the QCD gradient-flow formalism. This includes a collection of all relevant Feynman rules of the five-dimensional field theory and the composite operators considered in this paper. Tools from standard perturbative calculations are used to obtain Green's functions at finite flow time at higher orders in perturbation theory. The three-loop results for the quark condensate at finite and the conversion factor for the "ringed" quark fields to the scheme are presented as applications. We also re-evaluate an earlier result for the three-loop gluon condensate, improving on its accuracy.
Cite
@article{arxiv.1905.00882,
title = {Results and techniques for higher order calculations within the gradient-flow formalism},
author = {Johannes Artz and Robert V. Harlander and Fabian Lange and Tobias Neumann and Mario Prausa},
journal= {arXiv preprint arXiv:1905.00882},
year = {2022}
}
Comments
42 pages. v2: typo fixed in Eq.(64); matches published version, including (forthcoming) erratum