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Symmetry and Antisymmetry of the CMB Anisotropy Pattern

机译:CMB各向异性模式的对称性和反对称性

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摘要

Given an arbitrary function, we may construct symmetric and antisymmetric functions under a certain operation. Since statistical isotropy and homogeneity of our Universe has been a fundamental assumption of modern cosmology, we do not expect any particular symmetry or antisymmetry in our Universe. Besides fundamental properties of our Universe, we may also figure our contamination and improve the quality of the CMB data products, by matching the unusual symmetries and antisymmetries of the CMB data with known contaminantions. If we let the operation to be a coordinate inversion, the symmetric and antisymmetric functions have even and odd-parity respectively. The investigation on the parity of the recent CMB data shows a large-scale odd-parity preference, which is very unlikely in the statistical isotropic and homogeneous Universe. We investigated the association of the WMAP systematics with the anomaly, but did not find a definite non-cosmological cause. Besides the parity anomaly, there is anomalous lack of large-scale correlation in CMB data. We show that the odd-parity preference at low multipoles is, in fact, phenomenologically identical with the lack of large-angle correlation.
机译:给定任意函数,我们可以在一定操作下构造对称和反对称函数。由于我们宇宙的统计各向同性和同质性是现代宇宙论的基本假设,因此我们不希望宇宙中有任何特定的对称性或反对称性。除了我们宇宙的基本属性,我们还可以通过将CMB数据的异常对称性和反对称性与已知污染相匹配,来计算污染并提高CMB数据产品的质量。如果让该操作为坐标反演,则对称函数和反对称函数分别具有偶校验和奇校验。对最近CMB数据的奇偶性进行的研究表明,存在大规模奇偶奇偶性偏好,这在统计各向同性和齐次宇宙中是非常不可能的。我们调查了WMAP系统与异常的关联,但未找到明确的非宇宙学原因。除了奇偶校验异常外,CMB数据中还缺少大规模关联的缺乏。我们表明,在低多极点上,奇偶校验优先级实际上在现象学上与缺少大角度相关性相同。

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