English

Assembly of the Intracluster Light in the Horizon-AGN Simulation

Astrophysics of Galaxies 2024-09-18 v1

Abstract

The diffuse stellar component of galaxy clusters made up of intergalactic stars is termed the intracluster light (ICL). Though there is a developing understanding of the mechanisms by which the ICL is formed, no strong consensus has yet been reached on which objects the stars of the ICL are primarily sourced from. We investigate the assembly of the ICL starting approximately 1010 Gyr before z=0z=0 in 11 galaxy clusters (halo masses between 1×1014\sim1\times 10^{14} M_{\odot} and 7×1014\sim7\times 10^{14} M_{\odot} at z0z\approx0) in the Horizon-AGN simulation. By tracking the stars of galaxies that fall into these clusters past cluster infall, we are able to link almost all of the z0z\approx0 ICL back to progenitor objects. Satellite stripping, mergers, and pre-processing are all found to make significant contributions to the ICL, but any contribution from in-situ star-formation directly into the ICL appears negligible. Even after compensating for resolution effects, we find that approximately 9090 per cent of the stacked ICL of the 11 clusters that is not pre-processed should come from galaxies infalling with stellar masses above 10910^{9} M_{\odot}, with roughly half coming from infalling galaxies with stellar masses within half a dex of 101110^{11} M_{\odot}. The fact that the ICL appears largely sourced from such massive objects suggests that the ICL assembly of any individual cluster may be principally stochastic.

Keywords

Cite

@article{arxiv.2409.10607,
  title  = {Assembly of the Intracluster Light in the Horizon-AGN Simulation},
  author = {Harley J. Brown and Garreth Martin and Frazer R. Pearce and Nina A. Hatch and Yannick M. Bahé and Yohan Dubois},
  journal= {arXiv preprint arXiv:2409.10607},
  year   = {2024}
}

Comments

11 pages, 8 figures, accepted for publication in MNRAS