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Kinematic Distortions of the High-Redshift Universe as Seen from Quasar Proper Motions

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arxiv 2507.01798 v1 pith:TPBSMK53 submitted 2025-07-02 astro-ph.GA astro-ph.CO

Kinematic Distortions of the High-Redshift Universe as Seen from Quasar Proper Motions

classification astro-ph.GA astro-ph.CO
keywords properredshiftsvectorastrometrybinsgaiaharmonickinematic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Advances in optical astrometry allow us to infer the non-radial kinematic structure of the Universe directly from observations. Here I use a supervised machine learning neural network method to predict 1.57 million redshifts based on several photometric and metadata classifier parameters from the unWISE mid-infrared database and from Gaia. These estimates are used to divide the sample into three redshift bins: 1-2, 2-3, and $>3$. For each subset, all available Gaia proper motions are used in a global vector spherical harmonic solution to degree 3 (30 fitting vector functions). I find significant differences in a few fitted proper motion patterns at different redshifts. The largest signals are seen in the comparison of the vector spherical harmonic fits for the 1-2 and 2-3 redshift bins. The significant harmonics include a rigid spin, a dipole glide from the north Galactic pole to the south and an additional quadrupole distortion. Validation tests with filtered subsamples indicate that the detected effect can be caused by hidden systematic errors in astrometry. The results are verified by using an independent source of redshifts and computing the observer's Galactocentric acceleration. This study offers a new observational test of alternative cosmological models.

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Cited by 1 Pith paper

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

  1. Space Astrometry with Gaia: Advances in Understanding our Galaxy

    astro-ph.IM 2025-09 accept novelty 1.0

    A comprehensive review of the Gaia mission's measurement principles and its scientific impact on stellar, Galactic, and cosmological astronomy.