English

Dark Sector to Restore Cosmological Concordance

Cosmology and Nongalactic Astrophysics 2022-06-20 v3 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

We develop a new phenomenological model that addresses current tensions between observations of the early and late Universe. Our scenario features: (i) a decaying dark energy fluid (DDE), which undergoes a transition at z5,000z \sim 5,000, to raise today's value of the Hubble parameter -- addressing the H0H_0 tension, and (ii) an ultra-light axion (ULA), which starts oscillating at z104z\gtrsim 10^4, to suppress the matter power spectrum -- addressing the S8S_8 tension. Our Markov Chain Monte Carlo analyses show that such a Dark Sector model fits a combination of Cosmic Microwave Background (CMB), Baryon Acoustic Oscillations, and Large Scale Structure (LSS) data slightly better than the Λ\LambdaCDM model, while importantly reducing both the H0H_0 and S8S_8 tensions with late universe probes (3σ\lesssim 3\sigma). Combined with measurements from cosmic shear surveys, we find that the discrepancy on S8S_8 is reduced to the 1.4σ1.4\sigma level, and the value of H0H_0 is further raised. Adding local supernovae measurements, we find that the H0H_0 and S8S_8 tensions are reduced to the 1.4σ1.4\sigma and 1.2σ1.2\sigma level respectively, with a significant improvement Δχ218\Delta\chi^2\simeq -18 compared to the Λ\LambdaCDM model. With this complete dataset, the DDE and ULA are detected at 4σ\simeq 4\sigma and 2σ\simeq2\sigma, respectively. We discuss a possible particle physics realization of this model, with a dark confining gauge sector and its associated axion, although embedding the full details within microphysics remains an urgent open question. Our scenario will be decisively probed with future CMB and LSS surveys.

Keywords

Cite

@article{arxiv.2104.12798,
  title  = {Dark Sector to Restore Cosmological Concordance},
  author = {Itamar J. Allali and Mark P. Hertzberg and Fabrizio Rompineve},
  journal= {arXiv preprint arXiv:2104.12798},
  year   = {2022}
}

Comments

6+22 pages. v2: updated numerical results in the main text and in abstract; results for 2-parameters submodel and for different axion masses added to appendices; new references added. v3: typos corrected, additional comments on AIC and on "Olympics" ranking