arXiv:1003.1361·v2·High Energy Physics — Lattice
Electric and Magnetic Screening Masses at Finite Temperature from Generalized Polyakov-Line Correlations in Two-flavor Lattice QCD
Y. Maezawa🇯🇵 · S. Aoki🇯🇵 · S. Ejiri🇯🇵 · T. Hatsuda🇯🇵 · N. Ishii🇯🇵 · K. Kanaya🇯🇵 · N. Ukita🇯🇵 · T. Umeda (WHOT-QCD Collaboration)🇯🇵
Abstract
Screenings of the quark-gluon plasma in electric and magnetic sectors are studied on the basis of generalized Polyakov-line correlation functions in lattice QCD simulations with two flavors of improved Wilson quarks. Using the Euclidean-time reflection () and the charge conjugation (), electric and magnetic screening masses are extracted in a gauge invariant manner. Long distance behavior of the standard Polyakov-line correlation in the quark-gluon plasma is found to be dictated by the magnetic screening. Also, ratio of the two screening masses agrees with that obtained from the dimensionally-reduced effective field theory and the supersymmetric Yang-Mills theory.