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Investigating Ultra-Large Large-Scale Structures: Potential Implications for Cosmology

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arxiv 2409.14894 v1 pith:Z72ENDA7 submitted 2024-09-23 astro-ph.CO

classification astro-ph.CO
keywords structurescosmologicalcosmologydiscoverieshomogeneitylambdalarge-scalematter
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abstract

Large-scale structure (LSS) studies in cosmology map and analyse matter in the Universe on the largest scales. Understanding the LSS can provide observational support for the Cosmological Principle (CP) and the Standard Cosmological Model ($\Lambda$CDM). In recent years, many discoveries have been made of LSSs that are so large that they become difficult to understand within $\Lambda$CDM. Reasons for this are: they potentially challenge the CP, (i.e. the scale of homogeneity); and their formation and origin are not fully understood. In this article we review two recent LSS discoveries: the Giant Arc (GA, $\sim 1$ Gpc) and the Big Ring (BR, $\sim 400$ Mpc). Both structures are in the same cosmological neighbourhood -- at the same redshift $z \sim 0.8$ and with a separation on the sky of only $\sim 12^\circ$. Both structures exceed the often-cited scale of homogeneity (Yadav+ 2010), so individually and together, these two intriguing structures raise more questions for the validity of the CP and potentially hint at new physics beyond the Standard Model. The GA and BR were discovered using a novel method of mapping faint matter at intermediate redshifts, interpreted from the MgII absorption doublets seen in the spectra of background quasars.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The local galaxy distribution does not violate the cosmological principle

    astro-ph.CO 2026-07 unverdicted novelty 6.0 of 10

    The gigaparsec-scale anisotropy claimed in DESI DR1 disappears once luminosity distances are not mistaken for comoving distances and galaxy mocks include bias and redshift-space distortions.

  2. The Emperor's New Arc: gigaparsec patterns abound in a $\Lambda$CDM universe

    astro-ph.CO 2025-02 accept novelty 6.0 of 10

    Applying the same friends-of-friends search to a giant Lambda CDM simulation shows that Giant Arc-like patterns are common and their apparent overdensities are algorithmic artefacts.

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