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首页> 外文期刊>The Astrophysical journal >A METHOD TO ESTIMATE THE PRIMORDIAL POWER SPECTRUM FROM COSMIC MICROWAVE BACKGROUND DATA
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A METHOD TO ESTIMATE THE PRIMORDIAL POWER SPECTRUM FROM COSMIC MICROWAVE BACKGROUND DATA

机译:一种从宇宙微波背景数据估计主功率谱的方法

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A precise determination of the primordial spectrum of matter density fluctuations at superhorizon scales is essential to understanding large-scale structure in the universe. Attempts to constrain or obtain the primordial spectrum using data on cosmic microwave background (CMB) anisotropies have relied on statistical and correlation analyses that assume a power-law spectrum. We propose a method to derive P(k) directly from the CMB angular power spectrum that does not presuppose the need to know anything about its functional form. The method consists of a direct inversion of the Sachs-Wolfe formula. Using this new analysis technique and COBE data, we obtain an empirical P(k) that (1) supports a power-law parameterization and (2) has an amplitude and spectral index consistent with previous analyses of the same data. We obtain for the spectral index n = 1.52 ± 0.4 when the second-year COBE data are used and n = 1.22 ± 0.3 using the 4 year data set.
机译:精确确定超水平尺度上物质密度波动的原始光谱对于理解宇宙中的大规模结构至关重要。使用宇宙微波背景(CMB)各向异性数据限制或获得原始光谱的尝试依赖于假设为幂律谱的统计和相关分析。我们提出了一种直接从CMB角功率谱导出P(k)的方法,该方法不以需要了解有关其功能形式的任何知识为前提。该方法包括Sachs-Wolfe公式的直接反演。使用这种新的分析技术和COBE数据,我们获得了一个经验P(k),其(1)支持幂律参数化,并且(2)的振幅和光谱指数与以前对相同数据的分析一致。当使用第二年的COBE数据时,光谱指数为n = 1.52±0.4,而使用4年的数据集,则光谱指数为n = 1.22±0.3。

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