4.6 Article

A NEW MEASUREMENT OF THE BULK FLOW OF X-RAY LUMINOUS CLUSTERS OF GALAXIES

期刊

ASTROPHYSICAL JOURNAL LETTERS
卷 712, 期 1, 页码 L81-L85

出版社

IOP PUBLISHING LTD
DOI: 10.1088/2041-8205/712/1/L81

关键词

cosmology: observations; diffuse radiation; early universe

资金

  1. NASA [NNG04G089G/09-ADP09-0050]
  2. Spanish Ministerio de Educacion y Ciencia/Junta de Castilla y Leon [FIS2006-05319/GR-234]
  3. STFC [ST/F002963/1] Funding Source: UKRI
  4. Science and Technology Facilities Council [ST/F002963/1] Funding Source: researchfish

向作者/读者索取更多资源

We present new measurements of the large-scale bulk flows of galaxy clusters based on five-year WMAP data and a significantly expanded X-ray cluster catalog. Our method probes the flow via measurements of the kinematic Sunyaev-Zel'dovich (SZ) effect produced by the hot gas in moving clusters. It computes the dipole in the cosmic microwave background data at cluster pixels, which preserves the SZ component while integrating down other contributions. Our improved catalog of over 1000 clusters enables us to further investigate possible systematic effects and, thanks to a higher median cluster redshift, allows us to measure the bulk flow to larger scales. We present a corrected error treatment and demonstrate that the more X-ray luminous clusters, while fewer in number, have much larger optical depth, resulting in a higher dipole and thus a more accurate flow measurement. This results in the observed correlation of the dipole derived at the aperture of zero monopole with the monopole measured over the cluster central regions. This correlation is expected if the dipole is produced by the SZ effect and cannot be caused by unidentified systematics (or primary cosmic microwave background anisotropies). We measure that the flow is consistent with approximately constant velocity out to at least similar or equal to 800 Mpc. The significance of the measured signal peaks around 500 h(70)(-1) Mpc, most likely because the contribution from more distant clusters becomes progressively more diluted by the WMAP beam. However, at present, we cannot rule out that these more distant clusters simply contribute less to the overall motion.

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