Gluon Dynamics, Center Symmetry and the deconfinement phase transition in SU(3) pure Yang-Mills theory
P. J. Silva, O. Oliveira

TL;DR
This study investigates how the gluon propagator and Polyakov loop phase relate to center symmetry in SU(3) Yang-Mills theory, revealing a new order parameter for the deconfinement transition based on gluon form factors.
Contribution
It introduces a novel method to distinguish confined and deconfined phases using differences in gluon propagator form factors linked to Polyakov loop phases.
Findings
Gluon form factors differ significantly between phases.
The phase of the Polyakov loop correlates with gluon propagator behavior.
The method provides a measurable order parameter for deconfinement.
Abstract
The correlations between the modulus of the Polyakov loop, its phase and the Landau gauge gluon propagator at finite temperature are investigated in connection with the center symmetry for pure Yang-Mills SU(3) theory. In the deconfined phase, where the center symmetry is spontaneously broken, the phase of the Polyakov loop per configuration is close to , . We find that the gluon propagator form factors associated with differs quantitatively and qualitatively from those associated to . This difference between the form factors is a property of the deconfined phase and a sign of the spontaneous breaking of the center symmetry. Furthermore, given that this difference vanishes in the confined phase, it can be used as an order parameter associated to the deconfinement transition. For simulations near the…
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