Tracing the evolution in the iron content of the ICM
arXiv:astro-ph/0609664 · doi:10.1051/0004-6361:20065568
Abstract
We present a Chandra analysis of the X-ray spectra of 56 clusters of galaxies at z>0.3, which cover a temperature range 3<kT<15 keV. Our analysis is aimed at measuring the iron abundance in the intra-cluster medium (ICM) out to the highest redshift probed to date. We made use of combined spectral analysis performed over five redshift bins at 0.3<z<1.3 to estimate the average emission weighted iron abundance. We find that the emission weighted iron abundance measured within (0.15-0.3)R_vir in clusters below 5 keV is, on average, a factor of ~2 higher than in hotter clusters, following Z(T) = 0.88 T^{-0.47} Z_o, confirming the trend seen in local samples. We also find a constant average iron abundance Z_{Fe}~0.25Z_o as a function of redshift, but only for clusters at z>0.5. The emission weighted iron abundance is significantly higher (Z_{Fe}~0.4 Z_o) in the redshift range z~0.3-0.5, approaching the value measured locally in the inner 0.15 R_{vir} radii for a mix of cool-core and non cool-core clusters at 0.1<z<0.3. The decrease in metallicity with redshift can be parametrized by a power law of the form ~(1+z)^{-1.25}. The observed evolution implies that the average iron content of the ICM at present epoch is a factor of ~2 larger than at z~1.2. We confirm that the ICM is already significantly enriched (Z_{Fe} ~ 0.25 Z_o) at a look-back time of 9 Gyr. Our data provide significant constraints on the time scales and physical processes which drive the chemical enrichment of the ICM. (abridged)
Astronomy and Astrophysics, Volume 462, Issue 2, February I 2007, pp. 429-442
References in corpus (2)
Cited by in corpus (50)
- Cosmic Star Formation History
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- Images, structural properties and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3
- Searching for Cool Core Clusters at High redshift
- An Optical Catalog of Galaxy Clusters Obtained from an Adaptive Matched Filter Finder Applied to SDSS DR6
- Temperature and abundance profiles of hot gas in galaxy groups - I. Results and statistical analysis
- Observations of metals in the intra-cluster medium
- A uniform metallicity in the outskirts of massive, nearby galaxy clusters
- Scaling Properties of Galaxy Groups
- A Chandra archival study of the temperature and metal abundance profiles in hot Galaxy Clusters at 0.1 < z < 0.3
- X-MAS2: Study Systematics on the ICM Metallicity Measurements
- Enrichment and Pre-Heating in Intragroup Gas from Galactic Outflows
- Metal enrichment processes
- The Metallicity of the Intracluster Medium Over Cosmic Time: Further Evidence for Early Enrichment
- On the fraction of intermediate-mass close binaries that explode as type-Ia supernovae
- Chemical Evolution on the Scale of Clusters of Galaxies: A Conundrum?
- The effect of differential galactic winds on the chemical evolution of galaxies
- The chemical enrichment of the ICM from hydrodynamical simulations
- Dependence of Gravitational Wave Transient Rates on Cosmic Star Formation and Metallicity Evolution History
- The contribution from stars stripped in binaries to cosmic reionization of hydrogen and helium
- Bandpass Dependence of X-ray Temperatures in Galaxy Clusters
- Constraining galaxy cluster temperatures and redshifts with eROSITA survey data
- Metal enrichment of the intra-cluster medium over a Hubble time for merging and relaxed galaxy clusters
- On the Dynamical Origin of the ICM Metallicity Evolution
- The evolution of the spatially-resolved metal abundance in galaxy clusters up to z=1.4
- Evolution of giant molecular clouds across cosmic time
- Chandra deep observation of XDCP J0044.0-2033, a massive galaxy cluster at z>1.5
- Time Evolution of Galaxy Scaling Relations in Cosmological Simulations
- Entropy profiles in X-ray luminous galaxy clusters at z>0.1
- Apparent high metallicity in 3-4 keV galaxy clusters: the inverse iron-bias in action in the case of the merging cluster Abell 2028
- The Chemical Evolution of Galaxy Clusters: Dissecting the Iron Mass Budget of the Intracluster Medium
- Simulating the formation of a proto-cluster at z~2
- Abell 611. II. X-ray and strong lensing analyses
- Evolution of the metal content of the intra-cluster medium with hydrodynamical simulations
- On the evolution of the Fe abundance and of the Type Ia SN rate in clusters of galaxies
- Cosmic metal density evolution in neutral gas: insights from observations and cosmological simulations
- On the Fe abundance peak formation in cool-core clusters of galaxies: hints from cluster WARPJ1415.1+3612 at z=1.03
- Deep XMM-Newton Observations of the Most Distant SPT-SZ Galaxy Cluster
- The Swift X-ray Telescope Cluster Survey: data reduction and cluster catalog for the GRB fields
- The 2XMMi/SDSS Galaxy Cluster Survey. III. Clusters associated with spectroscopically targeted luminous red galaxies in SDSS-DR10
- The Swift X-ray Telescope Cluster Survey III: Cluster Catalog from 2005-2012 Archival Data
- Strong Lensing Analysis of the Cluster RCS0224-0002 at
- ICM properties and AGN distribution in high-z RCS clusters
- Star Formation and Chemical Enrichment in Protoclusters
- XMM-Newton observation of the cluster ZW 1305.4+2941 in the field SA 57
- AGN feedback in an infant galaxy cluster: the LOFAR-Chandra view of the giant FRII radio galaxy J103025+052430 at z=1.7
- The Swift X-ray Telescope Cluster Survey II. X-ray spectral analysis
- Non-thermal processes in the cluster of galaxies Abell 3376
- CHEERS: Future perspectives for abundance measurements in clusters with XMM-Newton