4.7 Article

RED STAR-FORMING GALAXIES AND THEIR ENVIRONMENT AT z=0.4 REVEALED BY PANORAMIC Hα IMAGING

期刊

ASTROPHYSICAL JOURNAL
卷 734, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/734/1/66

关键词

galaxies: active; galaxies: clusters: individual (A851); galaxies: evolution

资金

  1. Japan Society for the Promotion of Science (JSPS)
  2. Japanese Ministry of Education, Culture, Sports, and Science [18684004, 21340045]
  3. Grants-in-Aid for Scientific Research [18684004, 23244022, 21340045, 11J03067] Funding Source: KAKEN

向作者/读者索取更多资源

We present a wide-field H alpha imaging survey of the rich cluster CL0939+4713 (A851) at z = 0.41 with Suprime-Cam on the Subaru Telescope, using the narrow-band filter NB921. The survey is sensitive to active galaxies with star formation rates (SFRs) down to similar to 0.3 M-circle dot yr(-1) throughout the 27' x 27' field. We identified 445 H alpha emitters along the large-scale structures around the cluster. Using this sample, we find that (1) the fraction of H alpha emitters is a strong function of environment and shows a clear decline toward the cluster central region, and (2) the color of Ha emitters is clearly dependent on environment. The majority of the H alpha emitters have blue colors with B - I < 2, but we find H alpha emitters with red colors as well. Such red emitters are very rare in the cluster center or its immediate surrounding regions, while they are most frequently found in groups located far away from the cluster center. These groups coincide with the environment where a sharp transition in galaxy color distribution is seen. This may suggest that dusty star formation activity tends to be involved in galaxy truncation processes that are effective in groups, and that it is probably related to the pre-processing that generates present-day cluster S0 galaxies. Finally, we confirm that (3) the mass-normalized integrated SFR in clusters (i.e., the total SFR within 0.5 x R-200 from the cluster center divided by the cluster dynamical mass) rapidly increases with look-back time following approximately alpha (1 + z)(6) and is also correlated with the cluster mass.

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