论文标题

削减宇宙中间人:轻锥坐标中的一般相对论

Cutting out the cosmological middle man: General Relativity in the light-cone coordinates

论文作者

Mitsou, Ermis, Fanizza, Giuseppe, Grimm, Nastassia, Yoo, Jaiyul

论文摘要

相对论宇宙学中的分析计算可以分为两组:时间演化,将初始条件与观察者的轻锥和光传播有关以获得可观察到。 FLRW坐标中的宇宙学扰动理论构成了前一个任务的有效工具,但是后者在轻度适应的坐标中非常简单,这使光线射击朝向观察者世界线。在这里,我们指出的是,时间演化和可观察到的重建可以合并为单个计算,将初始条件与可观察物直接相关。如果一个人在这样的轻锥坐标中独特地工作,那么这是可能的,因此完全绕过了FLRW“中间人”坐标。我们首先详细介绍了这些轻锥坐标,扩展了文献中目前可用的材料,并为宇宙学扰动理论构建了一个特别方便的子集。然后,我们在完全非线性水平上表达这些坐标中的爱因斯坦和能量弹药保护方程。这是通过仔细的2+1+1分解来实现的,该分解可导致相对紧凑的表达式,并对所涉及数量的几何解释提供了良好的控制。最后,我们将宇宙学的扰动理论考虑到线性秩序,关注其余的仪表对称性,并始终获得仪表不变方程。此外,我们表明,尽管坐标系统使观察者世界线特权使随机波动实施统计同质性。

Analytical computations in relativistic cosmology can be split into two sets: time evolution relating the initial conditions to the observer's light-cone and light propagation to obtain observables. Cosmological perturbation theory in the FLRW coordinates constitutes an efficient tool for the former task, but the latter is dramatically simpler in light-cone-adapted coordinates that trivialize the light rays towards the observer world-line. Here we point out that time evolution and observable reconstruction can be combined into a single computation that relates directly initial conditions to observables. This is possible if one works uniquely in such light-cone coordinates, thus completely bypassing the FLRW "middle-man" coordinates. We first present in detail these light-cone coordinates, extending and generalizing the presently available material in the literature, and construct a particularly convenient subset for cosmological perturbation theory. We then express the Einstein and energy-momentum conservation equations in these coordinates at the fully non-linear level. This is achieved through a careful 2+1+1 decomposition which leads to relatively compact expressions and provides good control over the geometrical interpretation of the involved quantities. Finally, we consider cosmological perturbation theory to linear order, paying attention to the remaining gauge symmetries and consistently obtaining gauge-invariant equations. Moreover, we show that it is possible to implement statistical homogeneity on stochastic fluctuations, despite the fact that the coordinate system privileges the observer world-line.

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