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首页> 外文期刊>The Astrophysical journal >KECK DEEP FIELDS. IV. LUMINOSITY-DEPENDENT CLUSTERING AND GALAXY DOWNSIZING IN UV-SELECTED GALAXIES AT z = 4, 3, AND 2*
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KECK DEEP FIELDS. IV. LUMINOSITY-DEPENDENT CLUSTERING AND GALAXY DOWNSIZING IN UV-SELECTED GALAXIES AT z = 4, 3, AND 2*

机译:停止深场。 IV。在z = 4、3和2 *时,UV选星系的光度依赖聚类和银河缩小

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摘要

We investigate the luminosity-dependent clustering of rest-frame UV-selected galaxies at z ~ 4, 3, 2.2, and 1.7 in the Keck Deep Fields, which are complete to = 27 and cover 169 arcmin2. We find that at z ~ 4 and 3, UV-bright galaxies cluster more strongly than UV-faint ones, but at z ~ 2.2 and 1.7, the UV-bright galaxies are no longer the most strongly clustered. We derive mass estimates for objects in our sample by comparing our measurements to the predicted clustering of dark matter halos in the Millennium Simulation. From these estimates, we infer relationships between halo mass and star formation rate (SFR), and find that the most massive dark matter halos in our sample host galaxies with high SFRs (M 1700 –20, or 50 M ☉ yr–1) at z ~ 3 and 4, moderate SFRs (–20 M 1700 –19, or ~20 M ☉ yr–1) at z ~ 2.2, and lower SFRs (–19 M 1700 –18, or ~2 M ☉ yr–1) at z ~ 1.7. We believe our measurements may provide a new line of evidence for galaxy downsizing by extending that concept from stellar to halo mass. We also find that the objects with blue UV colors in our sample are much more strongly clustered than those with red UV colors, and we propose that this may be due to the presence of the 2175 ? dust absorption bump in more massive halos, which contain the older stellar populations and dust needed to produce the feature. The relatively small area covered by the survey means that the absolute values of the correlation lengths and halo masses we derive are heavily dependent on the "integral constraint" correction, but the uniformly deep coverage across a large-redshift interval allows us to detect several important trends that are independent of this correction.
机译:我们研究了凯克深场中z〜4、3、2.2和1.7处静止帧紫外线选择星系的光度依赖性聚类,该星系完整= 27,覆盖169 arcmin2。我们发现,在z〜4和3处,紫外线明亮的星系比紫外线微弱的星团更强,但是在z〜2.2和1.7处,紫外线明亮的星系不再是最强的团簇。通过将我们的测量结果与“千年模拟”中暗物质光环的预测聚类进行比较,我们得出了样本中物体的质量估计。从这些估计中,我们推断出晕质量与恒星形成率(SFR)之间的关系,发现在我们的样本宿主中,具有高SFR的星系中质量最大的暗物质晕(M 1700 <–20或> 50 M☉yr-1 )在z〜3和4时,在z〜2.2时为中等SFR(–20

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