Article Dans Une Revue The Astrophysical Journal Année : 2026

On the Origin of Intracluster Light based on the High-resolution Simulation, NewCluster

Seyoung Jeon
Emanuele Contini
San Han
Jinsu Rhee
Garreth Martin
Juhan Kim
Taysun Kimm
Gyeong-Hwan Byun
Yohan Dubois
J. Jang
Sukyoung Yi

Résumé

Intracluster light (ICL) is a key component of galaxy clusters, with the potential to trace their dynamical assembly histories and the underlying dark matter distribution. Despite these prospects, its faint nature makes a consensus on its origin or population properties difficult to achieve, both in observations and simulations. In the hope of finding a breakthrough, we utilize the ongoing high-resolution cluster simulation, NewCluster. By classifying billions of particles in and around the cluster with a rigorous tracking procedure, we find that the majority of the ICL originates from satellites, including surviving and disrupted galaxies. Another notable finding is that the preprocessed component follows the density profile of dark matter better than the other components and has distinctive properties: old age, low metallicity, and enhanced α-element abundance. We further investigate the orbital dynamics, and our results demonstrate that the stripped fraction of satellites is primarily determined by the time since infall and the pericenter distance. By linking the demographic, chemical, and orbital properties of ICL stars to their origins, this work proposes a quantitative approach for tracing the assembly history of galaxy clusters from the ICL.

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hal-05500412 , version 1 (09-02-2026)

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Seyoung Jeon, Emanuele Contini, San Han, Jinsu Rhee, Garreth Martin, et al.. On the Origin of Intracluster Light based on the High-resolution Simulation, NewCluster. The Astrophysical Journal, 2026, 998 (1), pp.30. ⟨10.3847/1538-4357/ae2eaa⟩. ⟨hal-05500412⟩
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