English

Phantom Mirage from Axion Dark Energy

Cosmology and Nongalactic Astrophysics 2026-02-10 v2 High Energy Physics - Phenomenology

Abstract

Supernova (SN) and baryon acoustic oscillation (BAO) distance measures have recently provided hints that the dark energy is not only dynamical but apparently evolves from normal to phantom dark energy between redshifts 0<z<10<z<1. A normal axion dark energy component in the mass range just below the Hubble scale can mimic a phantom component by appearing as dark energy at z=1z=1 and dark matter at z=0z=0, raising the possibility of a phantom mirage. We show that there is a wide range of axion dark energy contributions that can resolve the SN-BAO tension as well as thawing quintessence does, leaving BAO tension with the cosmic microwave background (CMB) for the distance measures from z1z\sim 1 to recombination to be resolved at high redshifts. With axions, raising the optical depth to reionization to τ0.1\tau \approx 0.1 works essentially as well as w0waw_0-w_a phantom dark energy for all but the lowE CMB data, with a remaining Δχ216\Delta\chi^2\sim -16 compared with Λ\LambdaCDM, whereas a small spatial curvature of ΩK0.003\Omega_K \sim 0.003 can largely relax the full SN-BAO-CMB tension with a total Δχ212\Delta\chi^2 \sim -12.

Keywords

Cite

@article{arxiv.2510.14957,
  title  = {Phantom Mirage from Axion Dark Energy},
  author = {Rayne Liu and Yijie Zhu and Wayne Hu and Vivian Miranda},
  journal= {arXiv preprint arXiv:2510.14957},
  year   = {2026}
}

Comments

14 pages, 14 figures. Changes reflect the accepted version in PRD, including a small change from the cosmological dependence of lensing bias, which does not affect our conclusions

R2 v1 2026-07-01T06:41:51.737Z