SIMBAD references

2013ApJ...772...24B - Astrophys. J., 772, 24 (2013/July-3)

Searching for cooling signatures in strong lensing galaxy clusters: evidence against baryons shaping the matter distribution in cluster cores.

BLANCHARD P.K., BAYLISS M.B., McDONALD M., DAHLE H., GLADDERS M.D., SHARON K. and MUSHOTZKY R.

Abstract (from CDS):

The process by which the mass density profile of certain galaxy clusters becomes centrally concentrated enough to produce high strong lensing (SL) cross-sections is not well understood. It has been suggested that the baryonic condensation of the intracluster medium (ICM) due to cooling may drag dark matter to the cores and thus steepen the profile. In this work, we search for evidence of ongoing ICM cooling in the first large, well-defined sample of SL selected galaxy clusters in the range 0.1 < z < 0.6. Based on known correlations between the ICM cooling rate and both optical emission line luminosity and star formation, we measure, for a sample of 89 SL clusters, the fraction of clusters that have [O II]λλ3727 emission in their brightest cluster galaxy (BCG). We find that the fraction of line-emitting BCGs is constant as a function of redshift for z > 0.2 and shows no statistically significant deviation from the total cluster population. Specific star formation rates, as traced by the strength of the 4000 Å break, D4000, are also consistent with the general cluster population. Finally, we use optical imaging of the SL clusters to measure the angular separation, Rarc, between the arc and the center of mass of each lensing cluster in our sample and test for evidence of changing [O II] emission and D4000 as a function of R arc, a proxy observable for SL cross-sections. D4000 is constant with all values of Rarc, and the [O II] emission fractions show no dependence on Rarc for Rarc> 10'' and only very marginal evidence of increased weak [O II] emission for systems with Rarc< 10''. These results argue against the ability of baryonic cooling associated with cool core activity in the cores of galaxy clusters to strongly modify the underlying dark matter potential, leading to an increase in SL cross-sections.

Abstract Copyright:

Journal keyword(s): dark matter - galaxies: clusters: general - galaxies: clusters: intracluster medium - galaxies: elliptical and lenticular, cD - galaxies: star formation - gravitational lensing: strong

Simbad objects: 5

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