Thermodynamic properties of gluon plasma: A q-potential approach

Guruprasad Kadam
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Abstract

In this work, we study the thermodynamic properties of quark-gluon plasma using Kramer's $q-potential$ method. We propose a modification in the first law of thermodynamics by including a temperature-dependent term when single particle energies themselves are temperature-dependent. With this modified first law, we derive an expression for pressure starting from Kramer's $q-potential$. We find that to maintain thermodynamic consistency, pressure receives an additional term solely due to medium-dependent dispersion relation. The energy density, by definition, remains a sum over all the single-particle energies with an appropriate weight factor. We confront this quasiparticle model with the lattice QCD data of SU(3) pure gluon plasma.
胶子等离子体的热力学特性:q势方法
在这项工作中,我们利用克拉默的 q 电位方法研究了夸克-胶子等离子体的热力学性质。我们提出了对热力学第一定律的修改,即当单粒子能量本身与温度有关时,加入一个与温度有关的项。有了这个修改后的第一定律,我们从克拉默的 q 电位推导出压力的表达式。我们发现,为了保持热力学的一致性,压强只因与介质相关的弥散关系而多了一个项。根据定义,能量密度仍然是所有单粒子能量的总和,并带有适当的权重因子。我们将这一准粒子模型与 SU(3) 纯胶子等离子体的晶格 QCD 数据进行了对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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