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首页> 外文期刊>The Astrophysical journal >MEASURING THE GALAXY POWER SPECTRUM WITH MULTIRESOLUTION DECOMPOSITION. Ⅳ. REDSHIFT DISTORTION
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MEASURING THE GALAXY POWER SPECTRUM WITH MULTIRESOLUTION DECOMPOSITION. Ⅳ. REDSHIFT DISTORTION

机译:用多分辨率分解测量银河光谱。 Ⅳ。红移失真

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In this paper, we develop a theory of redshift distortion of the galaxy power spectrum in the discrete wavelet transform (DWT) representation. Because the DWT power spectrum is dependent on both the scale and shape (configuration) of the decomposition modes, it is sensitive to distortion of the shape of the field. On the other hand, the redshift distortion causes a shape distortion of distributions in real space with respect to redshift space. Therefore, the shape-dependent DWT power spectrum is useful for detecting the effect of redshift distortion. We first established the mapping between the DWT power spectra in redshift and real space. The mapping depended on the redshift-distortion effects of (1) bulk velocity, (2) selection function, and (3) pairwise peculiar velocity. We then proposed β estimators using the DWT off-diagonal power spectra. These β estimators are model-free, even when the nonlinear redshift-distortion effect is not negligible. Moreover, these estimators do not rely on the assumption of whether the pairwise velocity dispersion is scale dependent. Tests with N-body simulation samples show that the proposed β estimators can yield reliable measurements of β with about 20% uncertainty for all popular dark matter models. We also develop an algorithm for reconstruction of the power spectrum in real space from the redshift-distorted power spectrum. Numerical tests also show that the real power spectrum can be well recovered from the redshift-distorted power spectrum.
机译:在本文中,我们发展了离散小波变换(DWT)表示中银河功率谱的红移失真的理论。因为DWT功率谱取决于分解模式的规模和形状(配置),所以它对场形状的失真很敏感。另一方面,红移失真引起相对于红移空间的实际空间中的分布的形状失真。因此,形状相关的DWT功率谱可用于检测红移失真的影响。我们首先建立了红移DWT功率谱与真实空间之间的映射。映射取决于(1)体速度,(2)选择函数和(3)成对特有速度的红移-失真效应。然后,我们使用DWT非对角功率谱提出了β估计。这些β估计量是无模型的,即使非线性红移失真效应不可忽略。而且,这些估计器不依赖于成对速度色散是否与比例有关的假设。使用N体模拟样本进行的测试表明,对于所有流行的暗物质模型,所提出的β估计量都可以产生可靠的β测量值,不确定性约为20%。我们还开发了一种从红移失真功率谱重建实际空间中功率谱的算法。数值测试还表明,可以从红移失真的功率谱中很好地恢复实际功率谱。

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