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Thermalization & hydrodynamics in Bjorken & Gubser flows

机译:Bjorken&Gubser流动的热化和流体动力学

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摘要

The dynamical scaling behavior of hydrodynamic and non-hydrodynamic moments of the distribution function is studied using third-order Chapman-Enskog hydrodynamics and anisotropic hydrodynamics for systems undergoing Bjorken and Gubser expansions, where exact solutions of the Boltzmann equation in Relaxation Time Approximation (RTA) are available for comparison. While dimensionless quantities like normalized shear, pressure anisotropy and normalized entropy show at late times universal scaling relations with small (large) Knudsen number for Bjorken (Gubser) flows, dimensionful quantities like the entropy per unit rapidity do not. Although the two hydrodynamic approximation schemes describe the exact attractors for normalized shear with high accuracy, their description for the normalized entropy is less precise. We attribute this to non-negligible couplings to non-hydrodynamic modes in the entropy evolution.
机译:使用三阶Chapman-Enskog流体动力学和各向异性流体动力学进行分布函数的流体动力学和非流体动力学矩的动态缩放行为,用于进行Bjorken和Gbser扩展的系统,其中Boltzmann方程在放松时间近似(RTA)的精确解 可用于比较。 虽然无量纲量如归一化剪切,压力各向异性和标准化熵在较晚时期与Bjorken(Gubser)的小(大)knudsen号码的普通缩放关系(Gbser)流动的关系,但尺寸数量,如每单位的熵速度。 尽管两个流动力近似方案描述了具有高精度的归一化剪切的精确吸引子,但它们对归一化熵的描述较低。 我们将其归因于熵演变中的非流体动力模式的不可忽略的耦合。

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