English

Constraining coupled quintessence with the 21cm signal

Cosmology and Nongalactic Astrophysics 2020-05-26 v2

Abstract

The 21cm line probes the evolution of matter perturbations over a wide range of redshifts, from the dark ages down to the completion of reionization. Observing the 21cm cosmological signal will extend our understanding of the evolution of the Universe and it is thus important to investigate the predictions of different cosmological models. In this paper we focus on the prospect of constraining coupled quintessence models during the Epoch of Reionization both for global signal experiments and for intensity mapping surveys. To derive the all-sky 21cm signal and fluctuations in coupled quintessence, we simulate cosmological volumes of the 21cm signal including the coupling between dark matter and the quintessence field, where the strength of the coupling is labeled by the parameter QQ. We show that the coupling between dark matter and quintessence modifies structure formation and expedites the process of reionization. For the upcoming 21cm line surveys like SKA and a fiducial global 21cm signal experiment, we perform a Fisher matrix analysis to constrain the coupling QQ and the dark matter density parameter Ωdm\Omega_\mathrm{dm}. The results indicate that SKA will be able to place a 68% upper limit 0.040.04 to Q|Q|. At the same time, such a global 21cm detector provides a constraint on the dark matter density parameter Ωdm\Omega_\mathrm{dm} around ΔΩdm0.005\Delta\Omega_{\rm dm}\approx 0.005, whereas SKA sets a quite weaker constraint around ΔΩdm0.1\Delta\Omega_{\rm dm}\approx0.1. These constraints are comparable to those already obtained from the cosmic microwave background, but explore an entirely different redshift range.

Keywords

Cite

@article{arxiv.1910.02763,
  title  = {Constraining coupled quintessence with the 21cm signal},
  author = {Xue-Wen Liu and Caroline Heneka and Luca Amendola},
  journal= {arXiv preprint arXiv:1910.02763},
  year   = {2020}
}

Comments

16 pages, 7 figures, 3 tables