2006A&A...447..827K


Query : 2006A&A...447..827K

2006A&A...447..827K - Astronomy and Astrophysics, volume 447, 827-842 (2006/3-1)

Simulations of galactic winds and starbursts in galaxy clusters.

KAPFERER W., FERRARI C., DOMAINKO W., MAIR M., KRONBERGER T., SCHINDLER S., KIMESWENGER S., VAN KAMPEN E., BREITSCHWERDT D. and RUFFERT M.

Abstract (from CDS):

We present an investigation of the metal enrichment of the intra-cluster medium (ICM) by galactic winds and merger-driven starbursts. We use combined N-body/hydrodynamic simulations with a semi-numerical galaxy formation model. The mass loss by galactic winds is obtained by calculating transonic solutions of steady state outflows, driven by thermal, cosmic ray and MHD wave pressure. The inhomogeneities in the metal distribution caused by these processes are an ideal tool to reveal the dynamical state of a galaxy cluster. We present surface brightness, X-ray emission weighted temperature and metal maps of our model clusters as they would be observed by X-ray telescopes like XMM-Newton. We show that X-ray weighted metal maps distinguish between pre- or post-merger galaxy clusters by comparing the metallicity distribution with the galaxy-density distribution: pre-mergers have a metallicity gap between the subclusters, post-mergers a high metallicity between subclusters. We apply our approach to two observed galaxy clusters, Abell 3528 and Abell 3921, to show whether they are pre- or post-merging systems. The survival time of the inhomogeneities in the metallicity distribution found in our simulations is up to several Gyr. We show that galactic winds and merger-driven starbursts enrich the ICM very efficiently after z=1 in the central (∼3Mpc radius) region of a galaxy cluster.

Abstract Copyright:

Journal keyword(s): galaxies: clusters: general - galaxies: abundances - galaxies: interactions - galaxies: ISM - X-ray: galaxies: clusters

Simbad objects: 4

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Number of rows : 4
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 ACO 3528 ClG 12 54 18.2 -29 01 16           ~ 154 1
2 BAX 193.5900-29.0100 ClG 12 54 22.1 -29 00 46           ~ 38 0
3 BAX 193.6700-29.2254 ClG 12 54 40.6 -29 13 44           ~ 59 0
4 ACO 3921 ClG 22 49 59.0 -64 25 48           ~ 149 1

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2023.09.28-14:22:25

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