4.6 Article

Implications of the central metal abundance peak in cooling core clusters of galaxies

Journal

ASTRONOMY & ASTROPHYSICS
Volume 416, Issue 3, Pages L21-L25

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361:20040047

Keywords

clusters of galaxies; cooling flows; supernovae; chemical evolution

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Recent XMM-Newton observations of clusters of galaxies have provided detailed information on the distribution of heavy elements in the central regions of clusters with cooling cores providing strong evidence that most of these metals come from recent SN type Ia. In this paper we compile information on the cumulative mass profiles of iron, the most important metallicity tracer. We find that long enrichment times (greater than or equal to5 Gyr) are necessary to produce the central abundance peaks. Classical cooling flows, a strongly convective intracluster medium, and a complete metal mixing by cluster mergers would destroy the observed abundance peaks too rapidly. Thus the observations set strong constraints on cluster evolution models requiring that the cooling cores in clusters are preserved over very long times. We further conclude from the observations that the innermost part of the intracluster medium is most probably dominated by gas originating predominantly from stellar mass loss of the cD galaxy.

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