Intracluster light is a close tracer of the dark matter halo shape

Fuente: arXiv
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Auteurs principaux: Fernandez, Adela, Bahé, Yannick, Hatch, Nina, Butler, Joseph, Kolcu, Tutku, Martin, Garreth, Montes, Mireia
Format: Preprint
Publié: 2026
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author Fernandez, Adela
Bahé, Yannick
Hatch, Nina
Butler, Joseph
Kolcu, Tutku
Martin, Garreth
Montes, Mireia
author_facet Fernandez, Adela
Bahé, Yannick
Hatch, Nina
Butler, Joseph
Kolcu, Tutku
Martin, Garreth
Montes, Mireia
contents We investigate whether the intracluster light (ICL) can serve as a reliable tracer of the shape of the underlying dark matter (DM) haloes in galaxy clusters. Using the cosmological Hydrangea cluster simulations, we measure the 3D and projected shapes of both components with a shape tensor computed in concentric ellipsoidal shells, out to the virial radius $R_\mathrm{200c}$ for each cluster. The ICL and DM are closely aligned, with their major axes typically offset from each other by $\lesssim$10 degrees. Their axis ratios also match closely, with a typical difference of only $\approx\! 0.07$ for both the major-to-minor and major-to-intermediate axes, the DM being slightly rounder than the ICL. These trends are consistent across 2D and 3D measurements and agree well with results from isophotal fitting of mock images. In detail, the axis ratio offset is sensitive to the method used to remove satellites, and may also depend on the choice of subgrid physics models. We demonstrate that the ICL traces the DM shape better than the distribution of satellite galaxies, which exhibits larger scatter in the axis ratio and misalignment angle and is overall more elliptical. Together, these results indicate that the ICL can act as a useful proxy for DM halo ellipticity and orientation.
format Preprint
id arxiv_https___arxiv_org_abs_2603_23158
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Intracluster light is a close tracer of the dark matter halo shape
Fernandez, Adela
Bahé, Yannick
Hatch, Nina
Butler, Joseph
Kolcu, Tutku
Martin, Garreth
Montes, Mireia
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
We investigate whether the intracluster light (ICL) can serve as a reliable tracer of the shape of the underlying dark matter (DM) haloes in galaxy clusters. Using the cosmological Hydrangea cluster simulations, we measure the 3D and projected shapes of both components with a shape tensor computed in concentric ellipsoidal shells, out to the virial radius $R_\mathrm{200c}$ for each cluster. The ICL and DM are closely aligned, with their major axes typically offset from each other by $\lesssim$10 degrees. Their axis ratios also match closely, with a typical difference of only $\approx\! 0.07$ for both the major-to-minor and major-to-intermediate axes, the DM being slightly rounder than the ICL. These trends are consistent across 2D and 3D measurements and agree well with results from isophotal fitting of mock images. In detail, the axis ratio offset is sensitive to the method used to remove satellites, and may also depend on the choice of subgrid physics models. We demonstrate that the ICL traces the DM shape better than the distribution of satellite galaxies, which exhibits larger scatter in the axis ratio and misalignment angle and is overall more elliptical. Together, these results indicate that the ICL can act as a useful proxy for DM halo ellipticity and orientation.
title Intracluster light is a close tracer of the dark matter halo shape
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2603.23158