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Thermal QCD deconfining phase transition in a finite volume within color-singletness and excluded volume effects: A finite size scaling analysis using cumulants

机译:热QCD在颜色单一性内排除有限体积内的相变并排除体积效应:使用累积量的有限尺寸缩放分析

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摘要

We study the properties of the deconfining phase transition for a finite-volume system in which the hadronic and quark-gluon plasma phases coexist and the finite extensions of the hadrons are taken into account. Finite-size effects are examined by probing the behavior of some useful response functions near the transition, and scaling exponents are determined using a finite-size scaling (FSS) analysis. For the shift scaling exponent, the finite-size transition point is determined from several definitions, and we propose new ways of defining this quantity, using cumulants of the probability distribution. Our study shows that the deconfining phase transition stays first-order, the scaling exponents being equal to unity. This result is consistent with the predictions of the standard FSS theoretical approaches to a first-order phase transition, and with results using Monte Carlo methods in lattice QCD and other models in statistical physics.
机译:我们研究了强子和夸克-胶子等离子体相共存并考虑了强子的有限扩展的有限体积系统的去约束相变的性质。通过探测过渡附近一些有用的响应函数的行为来检查有限大小的影响,并使用有限大小缩放(FSS)分析来确定缩放指数。对于移位缩放指数,从几个定义确定了有限大小的过渡点,并且我们提出了使用概率分布累积量定义此数量的新方法。我们的研究表明,解除约束的相变保持一阶,​​缩放指数等于1。该结果与标准FSS理论方法对一阶相变的预测相一致,并且与在晶格QCD中使用蒙特卡罗方法以及在统计物理学中使用其他模型的结果相符。

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