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Metal sign of a large-scale AGN feedback in cool-core cluster MACS J1931.8-2634

2026/08/01 by Qinnan Zhu, Junjie Mao, Ping Zhou +2
Physics and Astronomy · #astro-ph.HE #astro-ph.GA

paper · pdf

Accepted for publication in Astronomy & Astrophysics. 7 pages, 5 figures

arxiv created 2026/08/01 · arxiv updated 2026/08/04

Abstract

The spatial distribution of metals in the intracluster medium (ICM) is a sensitive tracer of the chemical and dynamical history of galaxy clusters. While most cool-core (CC) clusters exhibit a centrally peaked Fe abundance profile, several outliers show an anomalous central Fe drop, potentially associated with the AGN activities. We revisit the reported large-scale (sim 100 kpc) central Fe drop in the massive CC cluster MACS J1931.8-2634 using new XMM-Newton observations. We aim to verify this feature and search for imprints of AGN feedback on the ICM metallicity distribution. We analyzed sim 170 ks of new XMM-Newton observations and re-analyzed sim 100 ks archived Chandra observations. We derived radial and two-dimensional (2D) Fe abundance maps from CCD spectra. High-resolution RGS spectra were used to constrain the Ne/Fe abundance ratio to test the dust depletion scenario. Spectral fitting was performed in SPEX using an updated atomic database and both single- and multi-temperature collisional ionization equilibrium models. The previously reported central Fe drop is not confirmed in the radial profile from XMM-Newton. However, the 2D Fe distribution is clearly asymmetric: Fe-rich regions are elongated along the axis of the AGN cavities, extending beyond their immediate scale. The Ne/Fe ratio in the core is consistent with solar (\rm Ne/Fe = 1.03+0.25-0.23), arguing against the dust depletion scenario.