论文标题

Lyman Break类似物(ELBA)的环境调查:小组中星系的星系

The Environment of Lyman Break Analogues (ELBA) survey: Star-forming galaxies in small groups

论文作者

Santana-Silva, L., Gonçalves, T. S., Basu-Zych, A., Soares-Santos, M., Menéndez-Delmestre, K., Drlica-Wagner, A., Riguccini, L., Kuropatkin, N. P., Yanny, B., Eufrasio, R. T.

论文摘要

Lyman Break类似物(ELBA)调查的环境是对南部天空的33 $ deg {2} $的成像调查。在{\ it u},{\ it g},{\ it r}和{\ it i}带上带有blanco望远镜上的暗能量摄像头(DECAM)的频段中观察到了调查。该项目的主要目的是研究Lyman Break bublogues(LBA),低红移(Z $ \ sim $ 0.2)星系,这些星系与典型的星形星系非常相似,以z $ \ sim $ 3。我们探索环境是否对这些星系的观察到的特性有任何影响,从而提供了这些星系的特性,从而提供了对形式的价值互动的插图,并散发着流传量的流传量。使用最近的邻居方法,我们测量每个对象的局部密度,范围从小到大的尺度(星系簇)。将LBA周围的环境与该领域的一般星系人群的环境进行比较,得出的结论是,LBA平均在小尺度上填充了较密集的区域($ \ sim $ $ $ 1.5MPC $),但位于与其他较大尺度上的其他星形星系相似的环境($ \ sim $ \ sim $ 3.0 mpc $)。这提供了证据,表明附近的遭遇(如合并)可能会影响LBA中的恒星形成活动,然后将其注入较大的星系簇。我们将其解释为星系预处理的指示,与z $ \ sim $ 2 -3的理论期望一致,其中重力相互作用在此对象的早期形成过程中更加激烈

The Environment of Lyman Break Analogues (ELBA) survey is an imaging survey of 33 $deg^{2}$ of the southern sky. The survey was observed in {\it u}, {\it g}, {\it r}, and {\it i} bands with the Dark Energy Camera (DECam) on the Blanco telescope. The main goal of this project is to investigate the environment of Lyman break analogues (LBAs), low-redshift (z $\sim $0.2) galaxies that are remarkably similar to typical star-forming galaxies at z $\sim$ 3. We explore whether the environment has any influence on the observed properties of these galaxies, providing valuable insight on the formation and evolution of galaxies over cosmic time. Using the Nearest Neighbour method, we measure the local density of each object ranging from small to large scales (clusters of galaxies). Comparing the environment around LBAs with that of the general galaxy population in the field, we conclude that LBAs, on average, populate denser regions at small scales ($\sim$ $1.5Mpc$), but are located in similar environment to other star-forming galaxies at larger scales ($\sim$ $3.0 Mpc$). This offers evidence that nearby encounters such as mergers may influence the star formation activity in LBAs, before infall onto larger galaxy clusters. We interpret this an indication of galaxy preprocessing, in agreement with theoretical expectations for galaxies at z $\sim$ 2 -3 where the gravitational interactions are more intense in early formation processes of this objects

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