English

Cosmic Voids in Evolving Dark Sector Cosmologies: the Low Redshift Universe

Cosmology and Nongalactic Astrophysics 2017-05-03 v1

Abstract

We present a comparison of void properties between the standard model of cosmology, Λ\Lambda Cold Dark Matter (Λ\LambdaCDM), and two alternative cosmological models with evolving and interacting dark sectors: a quintessence model (ϕ\phiCDM) and a Coupled Dark Matter-Dark Energy (CDE) model. Using NN-body simulations of these models, we derive several measures of void statistics and properties, including distributions of void volume, ellipticity, prolateness, and average density. We find that the volume distribution derived from the CDE simulation deviates from the volume distribution derived from the Λ\LambdaCDM simulation in the present-day universe, suggesting that the presence of a coupled dark sector could be observable through this statistic. We also find that the distributions of void ellipticity and prolateness are practically indistinguishable among the three models over the redshift range z=0.01.0z=0.0-1.0, indicating that simple void shape statistics are insensitive to small changes in dark sector physics. Interestingly, we find that the distributions of average void density measured in each of the three simulations are distinct from each other. In particular, voids on average tend to be emptiest under a quintessence model, and densest under the Λ\LambdaCDM model. Our results suggest that it is the scalar field present in both alternative models that causes emptier voids to form, while the coupling of the dark sector mitigates this effect by slowing down the evacuation of matter from voids.

Keywords

Cite

@article{arxiv.1703.04885,
  title  = {Cosmic Voids in Evolving Dark Sector Cosmologies: the Low Redshift Universe},
  author = {Eromanga Adermann and Pascal J. Elahi and Geraint F. Lewis and Chris Power},
  journal= {arXiv preprint arXiv:1703.04885},
  year   = {2017}
}

Comments

16 pages, 10 figures, accepted by MNRAS