The Chemical Evolution of Galaxy Clusters: Dissecting the Iron Mass Budget of the Intracluster Medium
arXiv:2003.12426 · doi:10.1051/0004-6361/202037506
Abstract
We study the chemical evolution of galaxy clusters by measuring the iron mass in the ICM after dissecting the abundance profiles into different components. We use Chandra archival observations of 186 morphologically regular clusters in the redshift range [0.04, 1.07]. For each cluster we compute the iron abundance and gas density profiles. We aim at identifying in the iron distribution a central peak associated with the BCG, and an approximately constant plateau associated with early enrichment. We are able to firmly identify the two components in a significant fraction of the sample, simply relying on the fit of the abundance profile. We compute the iron mass included in the iron peak and plateau, and the gas mass-weighted iron abundance out to . While the iron plateau shows no evolution, we find marginal decrease with redshift in the iron peak. We measure that the fraction of iron peak mass is typically a few percent (~1%) of the total iron mass within . Therefore, since the total iron mass budget is dominated by the plateau, we find consistently that the global gas mass-weighted iron abundance does not evolve significantly. We are also able to reproduce past claims of evolution in the global iron abundance, which turn out to be due to the use of cluster samples with different selection methods combined to the use of emission-weighted instead of gas mass-weighted abundance values. Finally, while the intrinsic scatter in the iron plateau mass is consistent with zero, the iron peak mass exhibits a large scatter, in line with the fact that the peak is produced after the virialization of the halo and depends on the formation of the hosting cool core and the associated feedback processes. We conclude that only a spatially-resolved approach can resolve the issue of the ICM iron evolution, reconciling the contradictory results obtained in the last ten years.
Accepted for publication in A&A
References in corpus (23)
- On the connection between giant radio halos and cluster mergers
- Images, structural properties and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3
- The Representative XMM-Newton Cluster Structure Survey (REXCESS) of an X-ray Luminosity Selected Galaxy Cluster Sample
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Searching for Cool Core Clusters at High redshift
- XMM-Newton and Chandra Cross Calibration Using HIFLUGCS Galaxy Clusters: Systematic Temperature Differences and Cosmological Impact
- Tracing the evolution in the iron content of the ICM
- Chemical enrichment in the cluster of galaxies Hydra A
- X-Ray morphological analysis of the Planck ESZ clusters
- A statistically-selected Chandra sample of 20 galaxy clusters -- II. Gas properties and cool-core/non-cool core bimodality
- A uniform metallicity in the outskirts of massive, nearby galaxy clusters
- Intra Cluster Light properties in the CLASH-VLT cluster MACS J1206.2-0847
- A Chandra archival study of the temperature and metal abundance profiles in hot Galaxy Clusters at 0.1 < z < 0.3
- Direct X-ray Spectral Deprojection of Galaxy Clusters
- The Metallicity of the Intracluster Medium Over Cosmic Time: Further Evidence for Early Enrichment
- The evolution of the spatially-resolved metal abundance in galaxy clusters up to z=1.4
- Spectroscopic confirmation of a mature galaxy cluster at redshift two
- Chandra deep observation of XDCP J0044.0-2033, a massive galaxy cluster at z>1.5
- A volume-limited sample of X-ray galaxy groups and clusters: III. Central abundance drops
- On the origin of central abundance drops in the intracluster medium of galaxy groups and clusters
- Possible depletion of metals into dust grains in the core of the Centaurus cluster of galaxies
- On the Fe abundance peak formation in cool-core clusters of galaxies: hints from cluster WARPJ1415.1+3612 at z=1.03
- Magnetic fields and extraordinarily bright radio emission in the X-ray faint galaxy group MRC 0116+111
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- The Cosmic Baryon and Metal Cycles
- Ram Pressure Stripping in High-Density Environments
- The eROSITA Final Equatorial-Depth Survey (eFEDS): Catalog of galaxy clusters and groups
- The eROSITA Final Equatorial-Depth Survey (eFEDS): Characterization of Morphological Properties of Galaxy Groups and Clusters
- The 700 ks Chandra Spiderweb Field II: Evidence for inverse-Compton and thermal diffuse emission in the Spiderweb galaxy
- X-ray analysis of JWST's first galaxy cluster lens SMACS J0723.3-7327
- Chemical abundances in the outskirts of nearby galaxy groups measured with joint Suzaku and Chandra observations
- Deep XMM-Newton Observations of the Most Distant SPT-SZ Galaxy Cluster
- Origin of metals in old Milky Way halo stars based on GALAH and Gaia
- The History of Metal Enrichment Traced by X-ray Observations of High Redshift Galaxy Clusters
- X-Ray Studies of the Abell 3158 Galaxy Cluster with eROSITA
- Chemical enrichment of the ICM within the Virgo cluster I: radial profiles
- Chemical enrichment in groups and clusters
- Physical cool-core condensation radius in massive galaxy clusters
- The SRG/eROSITA All-Sky Survey: Exploring halo assembly bias with X-ray selected superclusters
- A Global Census of Metals in the Universe
- Deep Chandra Observations of the z = 1.16 Relaxed, Cool-core Galaxy Cluster SPT-CL J2215-3537
- Cooling rate and turbulence in the intracluster medium of the cool-core cluster Abell 2667
- A Heavy-Metal Scenario of Ultra-High-Energy Cosmic Rays
- Systematic search for lensed X-ray sources in the CLASH fields
- Chemical enrichment of ICM within the A3266 cluster I: radial profiles
- Multiwavelength Characterization of a Dynamically Relaxed Cool Core Galaxy Cluster at
- A Chandra view of SPT-CL J0217-5014: a massive galaxy cluster at a cosmic intersection at z=0.53