Properties of the twisted Polyakov loop coupling and the infrared fixed point in the SU(3) gauge theories
Etsuko Itou

TL;DR
This paper investigates the nonperturbative behavior of the twisted Polyakov loop coupling in SU(3) gauge theories, revealing the existence of an infrared fixed point in the Nf=12 case through lattice simulations.
Contribution
It provides a detailed nonperturbative analysis of the TPL coupling and clarifies the existence of an infrared fixed point in SU(3) Nf=12 gauge theories, addressing previous controversies.
Findings
Identified a nontrivial infrared fixed point in Nf=12 SU(3) gauge theory.
Clarified the impact of fake fixed points in the confinement phase.
Provided a robust analysis supporting the IRFP's existence in the massless theory.
Abstract
We report the nonperturbative behavior of the twisted Polyakov loop (TPL) coupling constant for the SU(3) gauge theories defined by the ratio of Polyakov loop correlators in finite volume with twisted boundary condition. We reveal the vacuum structures and the phase structure for the lattice gauge theory with the twisted boundary condition. Carrying out the numerical simulations, we determine the nonperturbative running coupling constant in this renormalization scheme for the quenched QCD and Nf=12 SU(3) gauge theories. At first, we study the quenched QCD theory using the plaquette gauge action. The TPL coupling constant has a fake fixed point in the confinement phase. We discuss this fake fixed point of the TPL scheme and obtain the nonperturbative running coupling constant in the deconfinement phase, where the magnitude of the Polyakov loop shows the nonzero values. We also…
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