Evolution in the iron abundance of the ICM
Abstract
We present a Chandra analysis of the X-ray spectra of 56 clusters of galaxies at , which cover a temperature range of keV. Our analysis is aimed at measuring the iron abundance in the ICM out to the highest redshift probed to date. We find that the emission-weighted iron abundance measured within in clusters below 5 keV is, on average, a factor of higher than in hotter clusters, following , which confirms the trend seen in local samples. We made use of combined spectral analysis performed over five redshift bins at to estimate the average emission weighted iron abundance. We find a constant average iron abundance as a function of redshift, but only for clusters at . The emission-weighted iron abundance is significantly higher () in the redshift range , approaching the value measured locally in the inner radii for a mix of cool-core and non cool-core clusters in the redshift range . The decrease in with can be parametrized by a power law of the form . The observed evolution implies that the average iron content of the ICM at the present epoch is a factor of larger than at . We confirm that the ICM is already significantly enriched () at a look-back time of 9 Gyr. Our data provide significant constraints on the time scales and physical processes that drive the chemical enrichment of the ICM.
Keywords
Cite
@article{arxiv.astro-ph/0703261,
title = {Evolution in the iron abundance of the ICM},
author = {I. Balestra and P. Tozzi and S. Ettori and P. Rosati and S. Borgani and V. Mainieri and C. Norman},
journal= {arXiv preprint arXiv:astro-ph/0703261},
year = {2008}
}
Comments
4 pages, 4 figures, to appear in the Proceedings of "The Extreme Universe in the Suzaku Era", Dicember 2006, Kyoto (Japan)