English

The Effect of Splashback on Weak Lensing Mass Estimates of Galaxy Clusters and Groups

Cosmology and Nongalactic Astrophysics 2023-05-29 v3

Abstract

The splashback radius of a dark matter halo, which corresponds to the first apocenter radius reached by infalling matter and substructures, has been detected around galaxy clusters using a multitude of observational methods, including weak lensing measurements. In this manuscript, we present how the splashback feature in the halo density profile affects galaxy cluster masses derived through weak lensing measurements if it is not accounted for. We find that the splashback radius has an increasingly large effect on group-sized halos towards M200m1013.5MM_{200m} \sim 10^{13.5} \mathrm{M_\odot}. Depending on the model and the radial scale used, the cluster/group masses can be biased low by more than 0.1 dex. This bias, in turn, would result in a slightly lower Ωm\Omega_m value if propagated into a cluster cosmology analysis. The splashback effect with group-sized dark matter halos may become important to consider, given the increasingly stringent cosmological constraints coming from optical wide-field surveys.

Keywords

Cite

@article{arxiv.2212.05406,
  title  = {The Effect of Splashback on Weak Lensing Mass Estimates of Galaxy Clusters and Groups},
  author = {Yuanyuan Zhang and Susmita Adhikari and Matteo Costanzi and Josh Frieman and Jim Annis and Chihway Chang},
  journal= {arXiv preprint arXiv:2212.05406},
  year   = {2023}
}