arXiv:2405.17335·v3·High Energy Physics — Lattice
Thermodynamic Potential of the Polyakov Loop in SU(3) Quenched Lattice QCD
Hideo Suganuma (Kyoto U.)🇯🇵 · Hiroki Ohata🇯🇵 · Masakiyo Kitazawa (YITP, Kyoto U.)🇯🇵
Abstract
Using SU(3) lattice QCD, we study for the first time the effective potential of the Polyakov loop at finite temperature, i.e., the thermodynamic potential, in the field-theoretical way. In the framework of the reweighting method in lattice QCD, we express the effective potential using the expectation value without a source term. In particular, we consider the most difficult and interesting case of vacuum coexistence at the critical temperature . We adopt SU(3) quenched lattice QCD on at = 5.89379, which corresponds exactly to the critical temperature of the deconfinement phase transition, and use 200,000 Monte Carlo configurations. After categorizing the gauge configurations into one -symmetric and three -broken vacua each, we perform a vacuum-associated reweighting method, using the gauge configurations around each vacuum separately. Finally, we obtain the Polyakov-loop effective potential, which is well depicted around the -symmetric and -broken vacua.
Comments: 11 pages, 4 figures, prepared for XIIth Int. Conf. on New Frontiers in Physics (ICNFP2023)