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Missing power vs low-? alignments in the cosmic microwave background: No correlation in the standard cosmological model

机译:缺少功率vs低功率?宇宙微波背景中的排列:在标准宇宙学模型中没有相关性

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On large angular scales (?60°), the two-point angular correlation function of the temperature of the cosmic microwave background (CMB), as measured (outside of the plane of the Galaxy) by the Wilkinson Microwave Anisotropy Probe, shows significantly lower large-angle correlations than expected from the standard inflationary cosmological model. Furthermore, when derived from the full CMB sky, the two lowest cosmologically interesting multipoles, the quadrupole (? = 2) and the octopole (? = 3), are unexpectedly aligned with each other. Using randomly generated full-sky and cut-sky maps, we investigate whether these anomalies are correlated at a statistically significant level. We conclusively demonstrate that, assuming Gaussian random and statistically isotropic CMB anisotropies, there is no statistically significant correlation between the missing power on large angular scales in the CMB and the alignment of the ? = 2 and ? = 3 multipoles. The chance to measure the sky with both such a lack of large-angle correlation and such an alignment of the low multipoles is thus quantified to be below 10-6.
机译:在大角度范围(?60°)上,由威尔金森微波各向异性探测器(在银河系平面之外)测量的宇宙微波背景温度(CMB)的两点角相关函数显示出明显更低的温度大角度相关性超出了标准膨胀宇宙学模型的预期。此外,当从整个CMB天空中获取时,两个宇宙学上最有趣的多极四极(?= 2)和八极杆(?= 3)意外地彼此对齐。使用随机生成的满天和满天的地图,我们调查了这些异常是否在统计上显着水平相关。我们最终证明,假设高斯随机和统计各向同性的CMB各向异性,则CMB中大角度尺度上的缺失功率与β的对准之间没有统计上的显着相关性。 = 2和? = 3多极。因此,在缺乏大角度相关性和低多极定位的情况下测量天空的机会被量化为低于10-6。

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