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首页> 外文期刊>The Astrophysical journal >ON THE VALIDITY OF THE STREAMING MODEL FOR THE REDSHIFT-SPACE CORRELATION FUNCTION IN THE LINEAR REGIME
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ON THE VALIDITY OF THE STREAMING MODEL FOR THE REDSHIFT-SPACE CORRELATION FUNCTION IN THE LINEAR REGIME

机译:线性域中Redshift-空间相关函数的流加模型的有效性

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The relation between the galaxy correlation functions in real-space and redshift-space is derived in the linear regime by an appropriate averaging of the joint probability distribution of density and velocity. The derivation recovers the familiar linear theory result on large scales but has the advantage of clearly revealing the dependence of the redshift distortions on the underlying peculiar velocity field; streaming motions give rise to distortions of O(Ω~(0.6)/b) while variations in the anisotropic velocity dispersion yield terms of order O(Ω~(1.2)/b~2). This probabilistic derivation of the redshift-space correlation function is similar in spirit to the derivation of the commonly used "streaming" model, in which the distortions are given by a convolution of the real-space correlation function with a velocity distribution function. The streaming model is often used to model the redshift-space correlation function on small, highly nonlinear, scales. There have been claims in the literature, however, that the streaming model is not valid in the linear regime. Our analysis confirms this claim, but we show that the streaming model can be made consistent with linear theory provided that the model for the streaming has the functional form predicted by linear theory and that the velocity distribution is chosen to be a Gaussian with the correct linear theory dispersion.
机译:通过适当地平均密度和速度的联合概率分布,可以在线性状态下得出实空间和红移空间中的星系相关函数之间的关系。该推导大规模地恢复了熟悉的线性理论结果,但具有的优势是可以清楚地揭示红移畸变对基础特殊速度场的依赖性。流运动引起O(Ω〜(0.6)/ b〜)的畸变,而各向异性速度色散的变化产生O(Ω〜(1.2)/ b〜2)的量级。从本质上讲,红移空间相关函数的这种概率推导与常用的“流”模型的推导相似,在该模型中,失真是通过实空间相关函数与速度分布函数的卷积给出的。流模型通常用于在小的,高度非线性的规模上对红移空间相关函数进行建模。然而,在文献中已经声称,流模型在线性状态下是无效的。我们的分析证实了这种说法,但我们证明,只要流模型具有线性理论预测的函数形式,并且将速度分布选择为具有正确线性的高斯模型,就可以使流模型与线性理论一致理论分散。

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