English

Testing the Equivalence Principle on Cosmological Scales Using Peculiar Acceleration Power Spectrum

Cosmology and Nongalactic Astrophysics 2025-11-06 v3

Abstract

While the (weak) Equivalence Principle (EP) has been rigorously tested within the solar system, its validity on cosmological scales, particularly in the context of dark matter and dark energy, remains uncertain. In this study, we propose a novel method to test EP on cosmological scales by measuring the peculiar acceleration power spectrum of galaxies using the redshift drift technique. We develop an EP estimator, EepE_{\rm ep}, to evaluate the consistency of the peculiar acceleration power spectrum across different tracers. By calculating the ratio of the peculiar acceleration power spectra of tracers, the ensemble average of EepE_{\rm ep} is expected to be unity if EP holds on cosmological scales for these tracers. We validate this estimator using N-body simulations, focusing on four redshift bins with z1.5z\leq 1.5 and scales of kk in the range of 0.0070.007 and 0.20.2 h/Mpch/\rm Mpc. By fitting a single parameter δep\delta_{\rm ep} across redshifts, we find that DM particle mocks without EP violation yield δep\delta_{\rm ep} consistent with zero under the small redshift measurement uncertainty case, while the large redshift uncertainty case slightly induces biases at low redshifts. In addition, when using DM halo mocks with controlled EP violations, no-violation and mild-violation cases show no significant detection, while moderate and strong violations produce statistically significant δep\delta_{\rm ep} values and high χ2\chi^2, especially at low redshifts, confirming the estimator's sensitivity. Taking advantage of advanced observing capabilities, such as next-generation facilities that extend beyond the Square Kilometer Array, the proposed method offers a promising approach for future cosmological tests of EP.

Keywords

Cite

@article{arxiv.2502.02426,
  title  = {Testing the Equivalence Principle on Cosmological Scales Using Peculiar Acceleration Power Spectrum},
  author = {Guoyuan Lu and Yi Zheng and Le Zhang and Xiaodong Li and Jiacheng Ding and Kwan Chuen Chan},
  journal= {arXiv preprint arXiv:2502.02426},
  year   = {2025}
}

Comments

11 pages, 3 figures, PRD accepted