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Searching for a Cosmological Preferred Axis: Union2 Data Analysis and Comparison with Other Probes

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We review, compare and extend recent studies searching for evidence for a preferred cosmological axis. We start from the Union2 SnIa dataset and use the hemisphere comparison method to search for a preferred axis in the data. We find that the hemisphere of maximum accelerating expansion rate is in the direction $(l,b)=({309^\circ}^{+23^\circ}_{-3^\circ}, {18^\circ}^{+11^\circ}_{-10^\circ})$ ($\omm=0.19$) while the hemisphere of minimum acceleration is in the opposite direction $(l,b)=({129^\circ}^{+23^\circ}_{-3^\circ},{-18^\circ}^{+10^\circ}_{-11^\circ})$ ($\omm=0.30$). The level of anisotropy is described by the normalized difference of the best fit values of $\omm$ between the two hemispheres in the context of \lcdm fits. We find a maximum anisotropy level in the Union2 data of $\frac{\Delta \ommax}{\bomm}=0.43\pm 0.06$. Such a level does not necessarily correspond to statistically significant anisotropy because it is reproduced by about $30%$ of simulated isotropic data mimicking the best fit Union2 dataset. However, when combined with the axes directions of other cosmological observations (bulk velocity flow axis, three axes of CMB low multipole moments and quasar optical polarization alignment axis), the statistical evidence for a cosmological anisotropy increases dramatically. We estimate the probability that the above independent six axes directions would be so close in the sky to be less than $1%$. Thus either the relative coincidence of these six axes is a very large statistical fluctuation or there is an underlying physical or systematic reason that leads to their correlation.

fields

astro-ph.CO 2

years

2026 1 2025 1

verdicts

UNVERDICTED 2

representative citing papers

Consistency of DES and DESI distances and the Standard Cosmological Model

astro-ph.CO · 2026-06-16 · unverdicted · novelty 6.0

DESI recovers the CMB-constrained parameter combination at sub-percent precision; high-redshift DES supernovae fit flat Lambda CDM while a 0.05 mag offset in the low-redshift anchor sample may be systematic, supporting overall model consistency from recombination to the local universe.

citing papers explorer

Showing 2 of 2 citing papers.

  • Consistency of DES and DESI distances and the Standard Cosmological Model astro-ph.CO · 2026-06-16 · unverdicted · none · ref 265 · internal anchor

    DESI recovers the CMB-constrained parameter combination at sub-percent precision; high-redshift DES supernovae fit flat Lambda CDM while a 0.05 mag offset in the low-redshift anchor sample may be systematic, supporting overall model consistency from recombination to the local universe.

  • Updates on dipolar anisotropy in local measurements of the Hubble constant from Cosmicflows-4 astro-ph.CO · 2025-12-02 · unverdicted · none · ref 37 · internal anchor

    Local Hubble constant anisotropy in Cosmicflows-4 data is primarily attributed to peculiar velocities and survey structure rather than cosmic-scale isotropy violation, with limited implications for the Hubble tension.