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Intracluster light: a luminous tracer for dark matter in clusters of galaxies

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arxiv 1807.11488 v2 pith:P632DP5N submitted 2018-07-30 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords darkmatterdistributionclustersstarsgalaxiesgalaxycluster
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The bulk of stars in galaxy clusters are confined within their constituent galaxies. Those stars do not trace the extended distribution of dark matter well as they are located in the central regions of the cluster's dark matter sub-halos. A small fraction of stars is expected, however, to follow the global dark matter shape of the cluster. These are the stars whose extended spatial distribution results from the merging activity of galaxies and form the intracluster light (ICL). In this work, we compare the bi-dimensional distribution of dark matter in massive galaxy clusters (as traced by gravitational lensing models) with the distribution of the ICL. To do that, we use the superb data from the Hubble Frontier Fields Initiative. Using the Modified Hausdorff distance (MHD) as a way of quantifying the similarities between the mass and ICL distributions, we find an excellent agreement (MHD~25 kpc) between the two components. This result shows that the ICL exquisitely follows the global dark matter distribution, providing an accurate luminous tracer of dark matter. This finding opens up the possibility of exploring the distribution of dark matter in galaxy clusters in detail using only deep imaging observations.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. How large can galaxies be? Ultra-deep imaging of IC 1101, the most extended known galaxy

    astro-ph.GA 2026-07 conditional novelty 5.0 of 10

    Ultra-deep imaging places the edge of IC 1101's main stellar body at ~260 kpc, a ~520 kpc diameter that is the largest galaxy edge measured to date.

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