论文标题
欧几里得:使用观察到的颜色选择静止和星形星系
Euclid: The selection of quiescent and star-forming galaxies using observed colours
论文作者
论文摘要
欧几里得的任务将在十亿个星系及以后的十亿个星系及以后观察到。这将提供一个无与伦比的机会,以研究了解星系形成和进化的几个关键问题。这些研究中的许多研究的第一步将是选择静态和星形星系样本,就像在文献中使用众所周知的颜色技术(例如uvj'图)所做的那样。但是,鉴于欧几里得望远镜可用的过滤器数量有限,因此这种休息框架颜色的回收将具有挑战性。因此,我们研究了观察到的欧几里得颜色,并与地面U波段观测值一起选择静态和恒星形成星系。在这项工作中测试的最有效的颜色组合包括(U-VIS)和(VIS-J)颜色。我们发现,这种组合使用户可以选择完整到$ \ sim70 \%$的静态星系样本,并且在RedShifts处少于15 $ \%$的污染范围为$ 0.75 <z <1 $。对于High-Z的星系或没有U波段互补观测值,(vis-Y)和(J-H)颜色代表有效的替代方案,$> 65 \%$ $的完整性水平和低于20 $ \%$ \%$ 1 <z <z <2 $的污染,用于查找Quiescent Galaxies。相比之下,使用模拟欧几里得观测值恢复剩余的框架时,使用传统UVJ技术选择的静态星系的样本仅为$ \ sim20 \%$完整。这表明我们的新方法是只有欧几里得带,以及U波段成像时最合适的方法。
The Euclid mission will observe well over a billion galaxies out to $z\sim6$ and beyond. This will offer an unrivalled opportunity to investigate several key questions for understanding galaxy formation and evolution. The first step for many of these studies will be the selection of a sample of quiescent and star-forming galaxies, as is often done in the literature by using well known colour techniques such as the `UVJ' diagram. However, given the limited number of filters available for the Euclid telescope, the recovery of such rest-frame colours will be challenging. We therefore investigate the use of observed Euclid colours, on their own and together with ground-based u-band observations, for selecting quiescent and star-forming galaxies. The most efficient colour combination, among the ones tested in this work, consists of the (u-VIS) and (VIS-J) colours. We find that this combination allows users to select a sample of quiescent galaxies complete to above $\sim70\%$ and with less than 15$\%$ contamination at redshifts in the range $0.75<z<1$. For galaxies at high-z or without the u-band complementary observations, the (VIS-Y) and (J-H) colours represent a valid alternative, with $>65\%$ completeness level and contamination below 20$\%$ at $1<z<2$ for finding quiescent galaxies. In comparison, the sample of quiescent galaxies selected with the traditional UVJ technique is only $\sim20\%$ complete at $z<3$, when recovering the rest-frame colours using mock Euclid observations. This shows that our new methodology is the most suitable one when only Euclid bands, along with u-band imaging, are available.