Novel and self-consistency analysis of the QCD running coupling in both the perturbative and nonperturbative domains
arXiv:2112.01200 · doi:10.1088/0256-307X/39/7/071201
Abstract
The QCD coupling is the most important parameter for achieving precise QCD predictions. By using the well measured effective coupling defined from the Bjorken sum rules as a basis, we suggest a novel and self-consistency way to fix the at all scales: The QCD light-front holographic model is adopted for its infrared behavior, and the fixed-order pQCD prediction under the principle of maximum conformality (PMC) is used for its high-energy behavior. Using the PMC scheme-and-scale independent perturbative series, and by transforming it into the one under the physical -scheme, we observe that a precise running behavior in both the perturbative and nonperturbative domains with a smooth transition from small to large scales can be achieved.
6 pages,3 figures
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