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The Status of Cosmic Topology after Planck Data

机译:普朗克数据后宇宙拓扑的状态

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In the last decade, the study of the overall shape of the universe, called Cosmic Topology, has become testable by astronomical observations, especially the data from the Cosmic Microwave Background (hereafter CMB) obtained by WMAP and Planck telescopes. Cosmic Topology involves both global topological features and more local geometrical properties such as curvature. It deals with questions such as whether space is finite or infinite, simply-connected or multi-connected, and smaller or greater than its observable counterpart. A striking feature of some relativistic, multi-connected small universe models is to create multiples images of faraway cosmic sources. While the last CMB (Planck) data fit well the simplest model of a zero-curvature, infinite space model, they remain consistent with more complex shapes such as the spherical Poincaré Dodecahedral Space, the flat hypertorus or the hyperbolic Picard horn. We review the theoretical and observational status of the field.
机译:在过去的十年中,通过天文观测,尤其是WMAP和普朗克望远镜从宇宙微波背景(以下称为CMB)获得的数据,已经可以检验称为宇宙拓扑的宇宙整体形状。宇宙拓扑既涉及全局拓扑特征,也涉及更局部的几何特性,例如曲率。它涉及诸如空间是有限还是无限,简单连接还是多重连接以及小于或大于其可观察对应空间的问题。一些相对论,多连接的小宇宙模型的显着特征是创建遥远宇宙源的多重图像。尽管最后的CMB(普朗克)数据非常适合零曲率,无限空间模型的最简单模型,但它们仍与更复杂的形状保持一致,例如球形庞加莱十二面体空间,平坦的金龟座或双曲线的皮卡德角。我们回顾了该领域的理论和观测状况。

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