V. G. Bornyakov, E. -M. Ilgenfritz, B. V. Martemyanov, V. K. Mitrjushkin, M. Muller-PreusskerGluodynamics and two-flavor QCD at non-zero temperature are analyzed with the so-called overimproved cooling method underneath which caloron options could continue to be secure. We contemplate topological configurations both at the very first occuring steady plateau of topological demand or at the very first (anti)selfdual plateau and locate the corresponding topological susceptibility at numerous temperatures on equally sides of the thermal changeover or crossover. In pure gluodynamics the topological susceptibility drops sharply at the deconfinement temperature although in complete QCD it decreases easily at temperatures above the pseudocritical a single. The outcomes are close to these calculated by other methods. We interpret our results in conditions of the (in)stability of calorons with non-trivial holonomy and their dyon constituents in opposition to overimproved cooling.See authentic: http://arxiv.org/stomach amazon online codes regarding fujifilm muscles/1304.0935
Thứ Sáu, 5 tháng 4, 2013
High Energy Physics - Theory: 1304.0935 (V. G. Bornyakov et al.)
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