English

Constraining cosmological parameters using the splashback radius of galaxy clusters

Cosmology and Nongalactic Astrophysics 2024-06-27 v1 Astrophysics of Galaxies

Abstract

Cosmological parameters such as ΩM\Omega_{\rm{M}} and σ8\sigma_{8} can be measured indirectly using various methods, including galaxy cluster abundance and cosmic shear. These measurements constrain the composite parameter S8S_{8}, leading to degeneracy between ΩM\Omega_{\rm{M}} and σ8\sigma_{8}. However, some structural properties of galaxy clusters also correlate with cosmological parameters, due to their dependence on a cluster's accretion history. In this work, we focus on the splashback radius, an observable cluster feature that represents a boundary between a cluster and the surrounding Universe. Using a suite of cosmological simulations with a range of values for ΩM\Omega_{\rm{M}} and σ8\sigma_{8}, we show that the position of the splashback radius around cluster-mass halos is greater in cosmologies with smaller values of ΩM\Omega_{\rm{M}} or larger values of σ8\sigma_{8}. This variation breaks the degeneracy between ΩM\Omega_{\rm{M}} and σ8\sigma_{8} that comes from measurements of the S8S_{8} parameter. We also show that this variation is, in principle, measurable in observations. As the splashback radius can be determined from the same weak lensing analysis already used to estimate S8S_{8}, this new approach can tighten low-redshift constraints on cosmological parameters, either using existing data, or using upcoming data such as that from Euclid and LSST.

Keywords

Cite

@article{arxiv.2406.17849,
  title  = {Constraining cosmological parameters using the splashback radius of galaxy clusters},
  author = {Roan Haggar and Yuba Amoura and Charlie T. Mpetha and James E. Taylor and Kris Walker and Chris Power},
  journal= {arXiv preprint arXiv:2406.17849},
  year   = {2024}
}

Comments

12 pages, 7 figures, 1 table, accepted for publication in ApJ

R2 v1 2026-06-28T17:19:08.755Z