论文标题
在新的放松时间近似玻尔兹曼方程的近似中的准粒子模型的传输系数
Transport coefficients of quasi-particle models within a new relaxation time approximation of the Boltzmann equation
论文作者
论文摘要
我们研究了一个动力学理论模型的传输特性,该模型用于使用弛豫时间近似的新表述来描述QCD在零化学势下的热力学特性。与以前的方法相反,后者是为了保留Boltzmann方程碰撞项的基本特性,以供弛豫时间的任何能量依赖性。实施了一种新型的匹配条件选择,以确保背景平均场仅取决于系统,即使系统不均衡。我们提供了一致的分析,分析相对论纳维尔 - 斯托克斯理论的运输系数如何随弛豫时间的能量依赖性而变化。我们还表明,该理论的熵产生与热力学的第二定律一致,并验证它与所采用的匹配条件无关。我们使用这个事实来计算传输系数的独立组合。
We investigate the transport properties of a kinetic theory model that is tuned to describe the thermodynamic properties of QCD at zero chemical potential using a new formulation of the relaxation time approximation. In contrast to previous approaches, the latter is constructed to preserve the fundamental properties of the collision term of the Boltzmann equation for any energy-dependence of the relaxation time. A novel choice of matching conditions is implemented to ensure that the background mean-field depends only on the temperature even when the system is out of equilibrium. We provide a consistent analysis of how the transport coefficients of relativistic Navier-Stokes theory vary with the energy dependence of the relaxation time. We also show that the entropy production of this theory is consistent with the second law of thermodynamics and verify that it is independent of the matching conditions employed. We used this fact to calculate the matching independent combination of transport coefficients.