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How the Polyakov loop and the regularization affect strangeness and restoration of symmetries at finite T

机译:Polyakov环路和正则化如何影响有限T的对称性的陌生感和恢复

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The effects of the Polyakov loop and of a regularization procedure that allows the presence of high momentum quark states at finite temperature is investigated within the Polyakov-loop extended Nambu-Jona-Lasinio model. The char-acteristic temperatures, as well as the behavior of observables that signal deconfinement and restoration of chiral and axial symmetries, are analyzed. paying special attention to the behavior of strangeness degrees of freedom. We observe that the cumulative effects of the Polyakov loop and of the regularization procedure contribute to a better description of the thermody-namics, as compared with lattice estimations. We find a faster partial restoration of chiral symmetry and the restoration of the axial symmetry appears as a natural consequence of the full recovering of the chiral symmetry that was dynamically broken. These results show the relevance of the effects of the interplay among the Polyakov loop dynamics, the high momentum quark sates and the restoration of the chiral and axial symmetries at finite temperature.
机译:在Polyakov-Loop延伸的Nambu-jons-lasinio模型中,研究了Polyakov环路和允许在有限温度下存在高动量夸克状态的正则化程序的影响。分析了Char-行动的温度,以及可观察到的观察表的行为,即信号解构和恢复手性和轴向对称的恢复。特别关注自由度的陌生程度。我们观察到,与晶格估计相比,Polyakov环路和正则化过程的累积效果有助于更好地描述热部位 - 纳米。我们发现手性对称的更快部分恢复,并且轴对称的恢复出现为动态破碎的手性对称性的全部恢复的自然后果。这些结果表明了聚焦回路动力学,高动量夸克SATEs之间的相互作用的影响以及在有限温度下对手性和轴对称的恢复的影响。

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