English

Interacting dark energy from redshift-space galaxy clustering

Cosmology and Nongalactic Astrophysics 2021-10-13 v2

Abstract

Interacting dark energy models have been proposed as attractive alternatives to Λ\LambdaCDM. Forthcoming Stage-IV galaxy clustering surveys will constrain these models, but they require accurate modelling of the galaxy power spectrum multipoles on mildly non-linear scales. In this work we consider a dark scattering model with a simple 1-parameter extension to wwCDM - adding only AA, which describes a pure momentum exchange between dark energy and dark matter. We then provide a comprehensive comparison of three approaches of modeling non-linearities, while including the effects of this dark sector coupling. We base our modeling of non-linearities on the two most popular perturbation theory approaches: TNS and EFTofLSS. To test the validity and precision of the modelling, we perform an MCMC analysis using simulated data corresponding to a Λ\LambdaCDM fiducial cosmology and Stage-IV surveys specifications in two redshift bins, z=0.5z=0.5 and z=1z=1. We find the most complex EFTofLSS-based model studied to be better suited at both, describing the mock data up to smaller scales, and extracting the most information. Using this model, we forecast uncertainties on the dark energy equation of state, ww, and on the interaction parameter, AA, finding σw=0.06\sigma_w=0.06 and σA=1.1\sigma_A=1.1 b/GeV for the analysis at z=0.5z=0.5 and σw=0.06\sigma_w=0.06 and σA=2.0\sigma_A=2.0 b/GeV for the analysis at z=1z=1. In addition, we show that a false detection of exotic dark energy up to 3σ\sigma would occur should the non-linear modelling be incorrect, demonstrating the importance of the validation stage for accurate interpretation of measurements.

Keywords

Cite

@article{arxiv.2106.13163,
  title  = {Interacting dark energy from redshift-space galaxy clustering},
  author = {Pedro Carrilho and Chiara Moretti and Benjamin Bose and Katarina Markovič and Alkistis Pourtsidou},
  journal= {arXiv preprint arXiv:2106.13163},
  year   = {2021}
}

Comments

30 pages, 10 figures. Version accepted for publication in JCAP

R2 v1 2026-06-24T03:34:06.718Z