English

Cosmology with the pairwise kinematic SZ effect: Calibration and validation using hydrodynamical simulations

Cosmology and Nongalactic Astrophysics 2018-07-02 v2 Astrophysics of Galaxies

Abstract

We study the potential of the kinematic SZ effect as a probe for cosmology, focusing on the pairwise method. The main challenge is disentangling the cosmologically interesting mean pairwise velocity from the cluster optical depth and the associated uncertainties on the baryonic physics in clusters. Furthermore, the pairwise kSZ signal might be affected by internal cluster motions or correlations between velocity and optical depth. We investigate these effects using the Magneticum cosmological hydrodynamical simulations, one of the largest simulations of this kind performed to date. We produce tSZ and kSZ maps with an area of 1600 deg2\simeq 1600~\mathrm{deg}^2, and the corresponding cluster catalogues with M500c3×1013 h1MM_{500c} \gtrsim 3 \times 10^{13}~h^{-1}M_\odot and z2z \lesssim 2. From these data sets we calibrate a scaling relation between the average Compton-yy parameter and optical depth. We show that this relation can be used to recover an accurate estimate of the mean pairwise velocity from the kSZ effect, and that this effect can be used as an important probe of cosmology. We discuss the impact of theoretical and observational systematic effects, and find that further work on feedback models is required to interpret future high-precision measurements of the kSZ effect.

Keywords

Cite

@article{arxiv.1712.05714,
  title  = {Cosmology with the pairwise kinematic SZ effect: Calibration and validation using hydrodynamical simulations},
  author = {Bjoern Soergel and Alexandro Saro and Tommaso Giannantonio and George Efstathiou and Klaus Dolag},
  journal= {arXiv preprint arXiv:1712.05714},
  year   = {2018}
}

Comments

16 pages, 13 figures, 2 tables; matches version accepted by MNRAS

R2 v1 2026-06-22T23:19:28.204Z