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A Challenge to the Standard Cosmological Model

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arxiv 2206.05624 v2 pith:MFWI62BV submitted 2022-06-11 astro-ph.CO gr-qchep-ph

A Challenge to the Standard Cosmological Model

classification astro-ph.CO gr-qchep-ph
keywords dipoleradioanisotropyconsistentgalaxiesmodelquasarssigma
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present the first joint analysis of catalogs of radio galaxies and quasars to determine if their sky distribution is consistent with the standard $\Lambda$CDM model of cosmology. This model is based on the cosmological principle, which asserts that the universe is statistically isotropic and homogeneous on large scales, so the observed dipole anisotropy in the cosmic microwave background (CMB) must be attributed to our local peculiar motion. We test the null hypothesis that there is a dipole anisotropy in the sky distribution of radio galaxies and quasars consistent with the motion inferred from the CMB, as is expected for cosmologically distant sources. Our two samples, constructed respectively from the NRAO VLA Sky Survey and the Wide-field Infrared Survey Explorer, are systematically independent and have no shared objects. Using a completely general statistic that accounts for correlation between the found dipole amplitude and its directional offset from the CMB dipole, the null hypothesis is independently rejected by the radio galaxy and quasar samples with $p$-value of $8.9\times10^{-3}$ and $1.2\times10^{-5}$, respectively, corresponding to $2.6\sigma$ and $4.4\sigma$ significance. The joint significance, using sample size-weighted $Z$-scores, is $5.1\sigma$. We show that the radio galaxy and quasar dipoles are consistent with each other and find no evidence for any frequency dependence of the amplitude. The consistency of the two dipoles improves if we boost to the CMB frame assuming its dipole to be fully kinematic, suggesting that cosmologically distant radio galaxies and quasars may have an intrinsic anisotropy in this frame.

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Cited by 5 Pith papers

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

  1. Prospect of Measuring the Cosmic Dipole by Associating Strongly Lensed Gravitational Waves with Galaxy Surveys

    astro-ph.CO 2026-05 unverdicted novelty 7.0

    Simulations forecast that 10 years of Einstein Telescope and Cosmic Explorer data could detect the cosmic dipole magnitude using strongly lensed GW events, with tighter bounds from combining double, triple, and quadru...

  2. Prospect of Measuring the Cosmic Dipole by Associating Strongly Lensed Gravitational Waves with Galaxy Surveys

    astro-ph.CO 2026-05 unverdicted novelty 6.0

    Simulations for Einstein Telescope and Cosmic Explorer forecast that decade-scale samples of strongly lensed GWs can constrain the cosmic dipole magnitude at the few×10^{-3} level when combined with multi-image events.

  3. The Ellis and Baldwin test of the Cosmic Dipole: Exploring the impact of multiple flux density cuts

    astro-ph.CO 2026-05 unverdicted novelty 5.0

    A multi-bin simultaneous dipole fitting method yields higher Bayes factors than single flux-cut approaches for non-power-law luminosity functions in cosmic dipole measurements.

  4. Testing cosmic anisotropy with the Combo correlation of gamma-ray bursts

    astro-ph.CO 2026-05 unverdicted novelty 4.0

    Larger sample of 244 GRBs with Combo correlation shifts best-fit anisotropy longitude by 54° from Pantheon-only result and deviates >1σ in hemisphere method, unlike smaller A118 sample, indicating potential to reduce ...

  5. Probing dipole and quadrupole anisotropy in Gamma-ray bursts from Swift dataset

    astro-ph.HE 2026-06 unverdicted novelty 3.0

    Swift GRB catalog shows dipole and quadrupole signals consistent with isotropy once the instrument exposure map is included in Monte Carlo null tests.