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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >General relativistic relation between density contrast and peculiar velocity
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General relativistic relation between density contrast and peculiar velocity

机译:密度对比和奇特速度之间的一般相对论关系

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Concepts like peculiar velocity, gravitational force, and power spectrum and their interrelationships are of utmost importance in the theories of structure formation. The observational implementation of these concepts is usually based on the Newtonian hydrodynamic equations, but used up to scales where general relativistic effects come in. Using a perturbation of FRW metric in harmonic gauge, we show that the relativistic effects reduce to light cone effects including the expansion of the universe. Within the Newtonian gravitation, the linear perturbation theory of large scale structure formation predicts the peculiar velocity field to be directly proportional to gravitational force due to the matter distribution. The corresponding relation between peculiar velocity field and density contrast has been given by Peebles. Using the general relativistic perturbation we have developed, this familiar relation is modified by doing the calculation on the light cone in contrast to the usual procedure of taking a spacelike slice defined at a definite time. The velocity and density-spectrum axe compared to the familiar Newtonian expressions. In particular, the relativistic beta-value obtained is reduced and leads to an increased bias factor or a decreased expected amount of the dark matter in a cluster. [References: 17]
机译:在结构形成理论中,诸如速度,引力,功率谱及其相互关系之类的概念至关重要。这些概念的观察性实现通常基于牛顿流体动力学方程,但在达到广义相对论效应的尺度上使用最多。使用谐波规范中的FRW度量扰动,我们证明相对论效应降低到包括光锥效应在内的光锥效应。宇宙的膨胀。在牛顿引力中,大型结构形成的线性摄动理论预测,由于物质的分布,特殊的速度场与引力成正比。 Peebles给出了特殊速度场与密度对比度之间的对应关系。使用我们开发的一般相对论摄动,通过对光锥进行计算,与在确定的时间获取定义的类似空间的切片的常规过程形成对比,可以修改这种熟悉的关系。速度和密度谱轴与熟悉的牛顿表达式相比。特别是,获得的相对论性β值降低,并导致群集中暗物质的偏见因子增加或预期数量减少。 [参考:17]

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