Discordance of dipole asymmetries seen in recent large radio surveys with the Cosmological Principle
arXiv:2303.05141 · doi:10.1093/mnras/stad2161
Abstract
In recent years, large radio surveys of Active Galactic Nuclei (AGNs), comprising millions of sources, have become available where one could investigate dipole asymmetries, assumedly arising due to a peculiar motion of the Solar system. Investigations of such dipoles have yielded in past much larger amplitudes than the cosmic microwave background (CMB) dipole, though their directions seem to lie close to the CMB dipole. Here we investigate dipole asymmetries in two recent large radio surveys, Very Large Array Sky Survey (VLASS) containing 1.9 million sources, covering the sky north of declination, and the Rapid ASKAP Continuum Survey (RACS) containing 2.1 million sources, covering the sky south of declination. We find dipoles determined from the VLASS and RACS surveys to be significantly larger than the CMB dipole. Dipole directions from the VLASS and RACS data differ significantly from each other. Nevertheless, along with a number of other previously determined dipoles, including the CMB, they all appear to lie in a narrow sky region, which argues for the various dipoles to be related somehow. However, significant differences in their derived peculiar velocities, including that of the CMB, cannot be explained by a peculiar motion of the Solar system, which should necessarily be a single value. Instead, their discordant peculiar velocities may be indicating that different cosmic reference frames are moving relative to each other or that the matter distribution on cosmic scales is not homogeneous and isotropic, either scenario being in contravention of what expected from the Cosmological Principle (CP).
12 pages, 9 figures, 4 tables, accepted in MNRAS
References in corpus (7)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Initial Performance of the NEOWISE Reactivation Mission
- Is the Observable Universe Consistent with the Cosmological Principle?
- Detecting the Cosmic Dipole Anisotropy in Large-Scale Radio Surveys
- The cosmic radio dipole: Bayesian estimators on new and old radio surveys
- Comment on "Cosmic radio dipole from NVSS and WENSS"
- The Dipole of the Pantheon+SH0ES Data
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- Cosmic dipole tensions: confronting the cosmic microwave background with infrared and radio populations of cosmological sources
- The model of the local Universe in the framework of the second-order perturbation theory
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- Constraints on the gravitational potential from DESI DR2 BAO and its implications for the local void scenario