论文标题

可观察到的宇宙是否与宇宙原理一致?

Is the Observable Universe Consistent with the Cosmological Principle?

论文作者

Aluri, Pavan Kumar, Cea, Paolo, Chingangbam, Pravabati, Chu, Ming-Chung, Clowes, Roger G., Hutsemékers, Damien, Kochappan, Joby P., Lopez, Alexia M., Liu, Lang, Martens, Niels C. M., Martins, C. J. A. P., Migkas, Konstantinos, Colgáin, Eoin Ó, Pranav, Pratyush, Shamir, Lior, Singal, Ashok K., Sheikh-Jabbari, M. M., Wagner, Jenny, Wang, Shao-Jiang, Wiltshire, David L., Yeung, Shek, Yin, Lu, Zhao, Wen

论文摘要

宇宙学原理(CP) - 宇宙在大规模上是各向同性和同质性的观念 - 是宇宙学的一个世纪进步的基础。它是通过Friedmann-Lema-Robertson-Walker(FLRW)宇宙学作为时空度量标准来制定的,并在成功且高度预测性的$λ$ -Cold-dark-Matter($λ$ CDM)中达到顶峰。然而,在$λ$ CDM型号中出现了紧张局势,最值得注意的是,哈勃常数的值是统计学上的显着差异,$ h_0 $。由于由单个参数确定的宇宙扩展的概念与CP密切相关,因此$ H_0 $张力的含义可能会超过$λ$ CDM与CP本身。这篇评论调查了当前的观察性提示,以表明与CP的期望偏离,强调了需要进一步研究的协同作用和分歧。撇开有关单个大型结构的辩论,与CP的潜在偏差包括天空上的宇宙学参数的变化,宇宙偶极子中的差异以及类星体极化和星系旋转的神秘对齐。尽管一系列观察性系统学可能会影响结果,但同样可能的是,精确的宇宙学可能已经超过了FLRW范式,这是一种极为务实但非基本的对称性假设。

The Cosmological Principle (CP) -- the notion that the Universe is spatially isotropic and homogeneous on large scales -- underlies a century of progress in cosmology. It is conventionally formulated through the Friedmann-Lemaître-Robertson-Walker (FLRW) cosmologies as the spacetime metric, and culminates in the successful and highly predictive $Λ$-Cold-Dark-Matter ($Λ$CDM) model. Yet, tensions have emerged within the $Λ$CDM model, most notably a statistically significant discrepancy in the value of the Hubble constant, $H_0$. Since the notion of cosmic expansion determined by a single parameter is intimately tied to the CP, implications of the $H_0$ tension may extend beyond $Λ$CDM to the CP itself. This review surveys current observational hints for deviations from the expectations of the CP, highlighting synergies and disagreements that warrant further study. Setting aside the debate about individual large structures, potential deviations from the CP include variations of cosmological parameters on the sky, discrepancies in the cosmic dipoles, and mysterious alignments in quasar polarizations and galaxy spins. While it is possible that a host of observational systematics are impacting results, it is equally plausible that precision cosmology may have outgrown the FLRW paradigm, an extremely pragmatic but non-fundamental symmetry assumption.

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