Systematic Scale-Setting to All Orders: The Principle of Maximum Conformality and Commensurate Scale Relations
Stanley J. Brodsky, Matin Mojaza, Xing-Gang Wu

TL;DR
This paper introduces the Principle of Maximum Conformality (PMC), a systematic method to eliminate renormalization scheme and scale ambiguities in perturbative QCD predictions at all orders, ensuring scheme-independent results.
Contribution
The paper develops a new PMC-based approach that unambiguously sets the QCD coupling scale at each order, generalizing renormalization schemes and improving prediction accuracy.
Findings
Successfully applied to processes up to order in _s
Achieves scheme-independent predictions consistent with conformality
Demonstrates applicability to various QCD observables and the static quark potential
Abstract
We present in detail a new systematic method which can be used to automatically eliminate the renormalization scheme and scale ambiguities in perturbative QCD predictions at all orders. We show that all of the nonconformal \beta-dependent terms in a QCD perturbative series can be readily identified by generalizing the conventional renormalization schemes based on dimensional regularization. We then demonstrate that the nonconformal series of pQCD at any order can be resummed systematically into the scale of the QCD coupling in a unique and unambiguous way due to a special degeneracy of the \beta-terms in the series. The resummation follows from the principal of maximum conformality (PMC) and assigns a unique scale for the running coupling at each perturbative order. The final result is independent of the initial choices of renormalization scheme and scale, in accordance with the…
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