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A simplified structure for the second order cosmological perturbation equations

机译:二阶宇宙学微扰方程的简化结构

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Increasingly accurate observations of the cosmic microwave background and the large scale distribution of galaxies necessitate the study of nonlinear perturbations of Friedmann-Lemaitre cosmologies, whose equations are notoriously complicated. In this paper we present a new derivation of the governing equations for second order perturbations within the framework of the metric-based approach that is minimal, as regards amount of calculation and length of expressions, and flexible, as regards choice of gauge and stress-energy tensor. Because of their generality and the simplicity of their structure our equations provide a convenient starting point for determining the behaviour of nonlinear perturbations of FL cosmologies with any given stress-energy content, using either the Poisson gauge or the uniform curvature gauge.
机译:对宇宙微波背景和星系的大规模分布的越来越精确的观测,使得研究Friedmann-Lemaitre宇宙学的非线性扰动成为必要,因为其方程非常复杂。在本文中,我们提出了一种新的基于度量的方法框架内的二阶摄动控制方程的推导,它在计算量和表达式长度方面最小,而在量规和应力选择方面则非常灵活。能量张量。由于它们的通用性和结构的简单性,我们的方程式提供了一个方便的起点,可以使用泊松规或均匀曲率规来确定具有任意给定应力-能量含量的FL宇宙的非线性摄动行为。

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