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arXiv:2409.02226·v2·Cosmology and Nongalactic Astrophysics

Cosmic topology. Part Ic. Limits on lens spaces from circle searches

Samanta Saha🇺🇸 · Craig J. Copi🇺🇸 · Glenn D. Starkman🇺🇸 · Stefano Anselmi🇮🇹 · Javier Carrón Duque🇪🇸 · Mikel Martin Barandiaran🇪🇸 · Yashar Akrami🇺🇸 · Fernando Cornet-Gomez🇺🇸 · Andrew H. Jaffe🇬🇧 · Arthur Kosowsky🇺🇸 · Deyan P. Mihaylov🇺🇸 · Thiago S. Pereira🇧🇷 · Amirhossein Samandar🇺🇸 · Andrius Tamosiunas (COMPACT Collaboration)🇺🇸

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Abstract

Cosmic microwave background (CMB) temperature and polarization observations indicate that in the best-fit Cold Dark Matter model of the Universe, the local geometry is consistent with at most a small amount of positive or negative curvature, i.e., . However, whether the geometry is flat (), positively curved () or negatively curved (), there are many possible topologies. Among the topologies of geometry, the lens spaces , where and ( and ) are positive integers, are quotients of the covering space of (the three-sphere) by , the cyclic group of order . We use the absence of any pair of circles on the CMB sky with matching patterns of temperature fluctuations to establish constraints on and as a function of the curvature scale that are considerably stronger than those previously asserted for most values of and . The smaller the value of , i.e., the larger the curvature radius, the larger the maximum allowed value of . For example, if then , while if , can be as high as 24. Future work will extend these constraints to a wider set of topologies.

Comments: 15 pages, 3 figures. v2: version published in JCAP

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