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Local Voids as the Origin of Large-Angle Cosmic Microwave Background Anomalies. I.

机译:作为大角度宇宙微波背景异常起源的局部空洞。一世。

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We explore the large angular scale temperature anisotropies in the cosmic microwave background due to expanding homogeneous local voids at redshift z 1. A compensated spherically symmetric homogeneous dust-filled void with radius ~3 × 102 h-1 Mpc and density contrast δ ~ -0.3 can be observed as a cold spot with a temperature anisotropy ΔT/T ~ -1 × 10-5 surrounded by a slightly hotter ring. We find that a pair of these circular cold spots separated by ~50° can account both for the planarity of the octopole and for the alignment between the quadrupole and the octopole in the cosmic microwave background (CMB) anisotropy. The cold spot in the Galactic southern hemisphere, which is anomalous at the ~3 σ level, can be explained by such a large void at z ~ 1. The observed north-south asymmetry in the large-angle CMB power can be attributed to the asymmetric distribution of these local voids between the two hemispheres. The statistical significance of the low quadrupole is further reduced in this interpretation of the large angular scale CMB anomalies.
机译:由于在红移z 1处扩展了均匀的局部空隙,我们探索了宇宙微波背景下的大角度尺度温度各向异性。一个半径约为3×102 h-1 Mpc且密度对比度δ〜-0.3的补偿的球对称均匀粉尘填充空隙可以观察到,它是温度各向异性为ΔT/ T〜-1×10-5的冷点,并被稍热的环包围。我们发现一对由〜50°隔开的圆形冷点既可以解释八极杆的平面性,又可以解释宇宙微波背景(CMB)各向异性中四极杆和八极杆之间的对准。银河系南半球的冷点在〜3σ处是异常的,可以用z〜1处的如此大的空隙来解释。在大角度CMB功率中观察到的南北不对称性可以归因于这些局部空隙在两个半球之间的不对称分布。在对大角度尺度CMB异常的这种解释中,低四极杆的统计意义进一步降低。

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