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September 26, 2024Monthly Notices of the Royal Astronomical Society Letters23 citationsOpen Access

The expected kinematic matter dipole is robust against source evolution

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SHSebastian von Hausegger

Key Points

  • The dipole anisotropy is about twice what the ΛCDM model predicts, presenting a major anomaly.
  • Recently, a >5σ dipole anomaly supports the kinematic interpretation of cosmic observations, underscoring key discrepancies.
  • Observational analysis focused on quasars and radio galaxies, with measurements confronting the standard model's predictions directly and effectively supported by the Ellis-Baldwin test framework for consistency in cosmology matters across vast distances and various redshifts ensuring stability against evolving source conditions enhances its validity and significance in the cosmic landscape calls for deeper exploration of cosmic structure.

Abstract

Abstract Recent measurements using catalogues of quasars and radio galaxies have shown that the dipole anisotropy in the large-scale distribution of matter is about twice as large as is expected in the standard ΛCDM model, indeed in any cosmology based on the Friedman-Lemaître-Robertson-Walker (FLRW) metric. This expectation is based on the kinematic interpretation of the dipole anisotropy of the cosmic microwave background, i.e. as arising due to our local peculiar velocity. The effect of aberration and Doppler boosting on the projected number counts on the sky of cosmologically distant objects in a flux-limited catalogue can then be calculated and confronted with observations. This fundamental consistency test of FLRW models proposed by Ellis5σ dipole anomaly uncovered recently remains an outstanding challenge to the ΛCDM model.

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Cite This Study

Sebastian von Hausegger (2024) studied this question.

synapsesocial.com/papers/68e57432b6db643587514438https://doi.org/10.1093/mnrasl/slae092
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