论文标题
线性化一般相对论耗散流体的非线性公式
Linearizing a Non-linear Formulation for General Relativistic Dissipative Fluids
论文作者
论文摘要
可以从涉及较低维空间的明确使用的动作原理中获得耗散性一般相对论多流体的完全非线性运动方程。更传统的策略,以耗散方式融合了著名的Mueller-Israel-Stewart Model-are,基于从热力学定律定义的平衡中的扩展。这里的目标是建立形式主义,以促进基于动作的结果与基于传统方法的结果进行比较。该过程的第一步是使用基于动作的方法本身来构建平衡的自洽概念。接下来,一阶偏差直接在物质空间上发展,这激发了后者作为基础热力学的天然舞台。最后,我们用一阶“热力学”通量确定了基于动作模型的耗散术语,并在其上构建了传统模型。该描述是在一般环境中开发的,因此形式主义可用于描述多流体系统,该系统尚未为因果和稳定模型。为了说明该方法,考虑了单个粘性流体的简单应用,即使在一阶停止扩展,我们也会绘制如何通过Cattaneo型方程实现因果响应。
Fully non-linear equations of motion for dissipative general relativistic multi-fluids can be obtained from an action principle involving the explicit use of lower dimensional matter spaces. More traditional strategies for incorporating dissipation-like the famous Mueller-Israel-Stewart model-are based on expansions away from equilibrium defined, in part, by the laws of thermodynamics. The goal here is to build a formalism to facilitate comparison of the action-based results with those based on the traditional approach. The first step of the process is to use the action-based approach itself to construct self-consistent notions of equilibrium. Next, first-order deviations are developed directly on the matter spaces, which motivates the latter as the natural arena for the underlying thermodynamics. Finally, we identify the dissipation terms of the action-based model with first-order "thermodynamical" fluxes, on which the traditional models are built. The description is developed in a general setting so that the formalism can be used to describe multi-fluid systems, for which causal and stable models are not yet available. As an illustration of the approach, a simple application of a single viscous fluid is considered and, even though the expansion is halted at first order, we sketch how a causal response can be implemented through Cattaneo-type equations.