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首页> 外文期刊>Progress of Theoretical Physics >Second-order gauge invariant cosmological perturbation theory - Einstein equations in terms of gauge invariant variables
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Second-order gauge invariant cosmological perturbation theory - Einstein equations in terms of gauge invariant variables

机译:二阶轨距不变宇宙学扰动理论-关于轨距不变变量的爱因斯坦方程

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摘要

Following the general framework of the gauge invariant perturbation theory developed in the papers [K. Nakamura, Prog. Theor. Phys. 110 (2003), 723; ibid. 113 (2005), 481], we formulate second-order gauge invariant cosmological perturbation theory in a four-dimensional homogeneous isotropic universe. We consider perturbations both in the universe dominated by a single perfect fluid and in that dominated by a single scalar field. We derive all the components of the Einstein equations in the case that the first-order vector and tensor modes are negligible. All equations are derived in terms of gauge invariant variables without any gauge fixing. These equations imply that second-order vector and tensor modes may be generated due to the mode-mode coupling of the linear-order scalar perturbations. We also briefly discuss the main progress of this work through comparison with previous works.
机译:遵循规范不变扰动理论在论文中发展的一般框架[K.中村编理论。物理110(2003),723;同上113(2005),481],我们在二维均质各向同性宇宙中建立了二阶轨距不变宇宙学扰动理论。我们考虑在以单个完美流体为主的宇宙中和以单个标量场为主的宇宙中的扰动。在一阶向量和张量模式可忽略的情况下,我们推导出爱因斯坦方程的所有分量。所有方程都是根据量规不变变量导出的,没有任何量规固定。这些方程式暗示,由于线性阶标量摄动的模式-模式耦合,可能会生成第二阶矢量和张量模式。通过与以前的作品进行比较,我们还简要讨论了该作品的主要进展。

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