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THE zCOSMOS* 20k GROUP CATALOG

机译:zCOSMOS * 20k组目录

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We present an optical group catalog between 0.1 z 1 based on 16,500 high-quality spectroscopic redshifts in the completed zCOSMOS-bright survey. The catalog published herein contains 1498 groups in total and 192 groups with more than five observed members. The catalog includes both group properties and the identification of the member galaxies. Based on mock catalogs, the completeness and purity of groups with three and more members should be both about 83% with respect to all groups that should have been detectable within the survey, and more than 75% of the groups should exhibit a one-to-one correspondence to the "real" groups. Particularly at high redshift, there are apparently more galaxies in groups in the COSMOS field than expected from mock catalogs. We detect clear evidence for the growth of cosmic structure over the last seven billion years in the sense that the fraction of galaxies that are found in groups (in volume-limited samples) increases significantly with cosmic time. In the second part of the paper, we develop a method for associating galaxies that only have photo-z to our spectroscopically identified groups. We show that this leads to improved definition of group centers, improved identification of the most massive galaxies in the groups, and improved identification of central and satellite galaxies, where we define the former to be galaxies at the minimum of the gravitational potential wells. Subsamples of centrals and satellites in the groups can be defined with purities up to 80%, while a straight binary classification of all group and non-group galaxies into centrals and satellites achieves purities of 85% and 75%, respectively, for the spectroscopic sample.
机译:在完成的zCOSMOS-bright调查中,我们基于16,500个高质量的光谱红移,给出了介于0.1 z 1之间的光学组目录。本文发布的目录总共包含1498个组和192个组,其中有五个以上的观察成员。该目录包括组属性和成员星系的标识。根据模拟目录,相对于在调查中应检测到的所有组,具有三个或更多成员的组的完整性和纯度均应约为83%,并且应有超过75%的组显示出-与“真实”组的一个对应。特别是在高红移情况下,COSMOS字段中的组中的星系显然比模拟目录中期望的要多。在过去的70亿年中,我们发现了明确的证据,证明了宇宙结构增长的意义,即在组中发现的星系比例(在有限体积的样本中)随着宇宙时间的增加而显着增加。在本文的第二部分中,我们开发了一种将仅具有光子z的星系与我们在光谱上确定的组相关联的方法。我们表明,这将导致改进的组中心定义,改进的组中最大质量星系的识别以及改进的中央星系和卫星星系的识别,其中我们将前者定义为重力势阱最少的星系。可以将组中中心和卫星的子样本的纯度定义为最高80%,而将光谱样本中的所有组星系和非组星系分为中心和卫星的直接二进制分类可分别达到85%和75%的纯度。 。

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