A Consistent Comparison of Intracluster Light Assembly in Simulations I. Redshift Evolution and Progenitor Galaxies

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ID: 317850
2026
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Abstract
Abstract The tidal stripping of satellite galaxies and the stellar detritus ejected during galaxy mergers builds up a diffuse stellar component in galaxy clusters known as the intracluster light (ICL). We investigate ICL assembly in cluster-mass haloes (M178c ∼ 1014 − 1015 M⊙) using four different hydrodynamical simulations (Horizon-AGN, TNG100, The Three Hundred Gizmo-Simba 7K, and Hydrangea) under a homogenized ICL identification framework. For our fiducial ICL definition we obtain broadly consistent z ≈ 0 ICL stellar mass fractions (∼0.1 − 0.2) and, by tracking the progenitors of z ≈ 0 clusters back to z ≳ 2, find no significant evolution in average ICL mass fractions. Alternative approaches for distinguishing the ICL from the central galaxy show the absolute ICL fraction to be highly sensitive to adopted definition, but we never find any significant inter-simulation discrepancies when implementing a consistent methodology to identify the ICL. Whether the average ICL mass fraction falls with increasing redshift or does not evolve is determined by the ICL definition adopted. By tracing z ≈ 0 ICL stars back to their progenitor galaxies, we find that lower-mass satellites typically make slightly larger ICL contributions relative to their mass in every considered simulation, but which galaxies make the dominant contribution to the ICL is primarily controlled by the infalling satellite mass function. Most ICL stars sourced from satellite galaxies are therefore expected to originate from galaxies with infall stellar masses above ∼1010 M⊙ and largely within 1010.5 − 1011.5 M⊙.
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Authors Harley J Brown, Garreth Martin, F. R. Pearce, Yannick M Bahé, J Butler, Weiguang Cui, N. A. Hatch, Alexander Knebe
Journal monthly notices of the royal astronomical society
Year 2026
DOI
10.1093/mnras/stag1172
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