Dyson-Schwinger Equations in Minimal Subtraction
arXiv:2109.13684 · doi:10.4171/aihpd/169
Abstract
We compare the solutions of one-scale Dyson-Schwinger equations in the Minimal subtraction (MS) scheme to the solutions in kinematic (MOM) renormalization schemes. We establish that the MS-solution can be interpreted as a MOM-solution, but with a shifted renormalization point, where the shift itself is a function of the coupling. We derive relations between this shift and various renormalization group functions and counter terms in perturbation theory. As concrete examples, we examine three different one-scale Dyson-Schwinger equations, one based on the D=4 multiedge graph, one for the D=6 multiedge graph and one mathematical toy model. For each of the integral kernels, we examine both the linear and nine different non-linear Dyson-Schwinger equations. For the linear cases, we empirically find exact functional forms of the shift between MOM and MS renormalization points. For the non-linear DSEs, the results for the shift suggest a factorially divergent power series. We determine the leading asymptotic growth parameters and find them in agreement with the ones of the anomalous dimension. Finally, we present a tentative exact non-perturbative solution to one of the non-linear DSEs of the toy model.
33 pages, 15 figures, 12 tables
References in corpus (7)
- An Étude in non-linear Dyson--Schwinger Equations
- Non-Perturbative Completion of Hopf-Algebraic Dyson-Schwinger Equations
- Renormalization group functions for the Wess-Zumino model: up to 200 loops through Hopf algebras
- Hopf algebraic Renormalization of Kreimer's toy model
- Growth estimates for Dyson-Schwinger equations
- An Efficient Method for the Solution of Schwinger--Dyson equations for propagators
- Semiclassical Trans-Series from the Perturbative Hopf-Algebraic Dyson-Schwinger Equations: QFT in 6 Dimensions
Cited by in corpus (6)
- Statistics of Feynman amplitudes in -theory
- Sequences of Trees and Higher-Order Renormalization Group Equations
- Feynman integrals at large loop order and the - distribution
- Ladders and rainbows in Minimal Subtraction
- Gluon Mass Generation from Renormalons and Resurgence
- Taming a resurgent ultra-violet renormalon