4.7 Article

THE MORPHOLOGIES AND ALIGNMENTS OF GAS, MASS, AND THE CENTRAL GALAXIES OF CLASH CLUSTERS OF GALAXIES

期刊

ASTROPHYSICAL JOURNAL
卷 819, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.3847/0004-637X/819/1/36

关键词

dark matter; galaxies: clusters: intracluster medium; galaxies: elliptical and lenticular, cD; gravitational lensing: strong; gravitational lensing: weak; large-scale structure of universe

资金

  1. STScI/NASA award [HST-GO-12065.07-A]
  2. NASA ADAP award [NNX13AI41G]
  3. Chandra archive grant [SAO AR3-14013X]
  4. FP7-PEOPLE-IIF Grant [PIIF-GA-2013-627474]
  5. NSF [AST-1210973]
  6. National Science Foundation [PHYS-1066293, NSF/AST-0838261]
  7. Norris Foundation CCAT Postdoctoral Fellowship
  8. NASA Graduate Student Research Fellowship
  9. Gordon and Betty Moore Foundation
  10. MINECO [AYA2012-31101]
  11. [ASI-INAF I/009/10/0]
  12. [PRIN-INAF 2012]
  13. [NASA/NNX11AB07G]
  14. NASA [473019, NNX13AI41G] Funding Source: Federal RePORTER
  15. Direct For Mathematical & Physical Scien
  16. Division Of Astronomical Sciences [1313447, 1210973] Funding Source: National Science Foundation

向作者/读者索取更多资源

Morphology is often used to infer the state of relaxation of galaxy clusters. The regularity, symmetry, and degree to which a cluster is centrally concentrated inform quantitative measures of cluster morphology. The Cluster Lensing and Supernova survey with Hubble Space Telescope (CLASH) used weak and strong lensing to measure the distribution of matter within a sample of 25 clusters, 20 of which were deemed to be relaxed based on their X-ray morphology and alignment of the X-ray emission with the Brightest Cluster Galaxy. Toward a quantitative characterization of this important sample of clusters, we present uniformly estimated X-ray morphological statistics for all 25 CLASH clusters. We compare X-ray morphologies of CLASH clusters with those identically measured for a large sample of simulated clusters from the MUSIC-2 simulations, selected by mass. We confirm a threshold in X-ray surface brightness concentration of C greater than or similar to 0.4 for cool-core clusters, where C is the ratio of X-ray emission inside 100 h(70)(-1) kpc compared to inside 500 h(70)(-1) kpc. We report and compare morphologies of these clusters inferred from Sunyaev-Zeldovich Effect (SZE) maps of the hot gas and in from projected mass maps based on strong and weak lensing. We find a strong agreement in alignments of the orientation of major axes for the lensing, X-ray, and SZE maps of nearly all of the CLASH clusters at radii of 500 kpc (approximately 1/2 R-500 for these clusters). We also find a striking alignment of clusters shapes at the 500 kpc scale, as measured with X-ray, SZE, and lensing, with that of the near-infrared stellar light at 10 kpc scales for the 20 relaxed clusters. This strong alignment indicates a powerful coupling between the cluster-and galaxy-scale galaxy formation processes.

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