论文标题

分成几块:Atlas和Aliqa Uma作为一个单流

Broken into Pieces: ATLAS and Aliqa Uma as One Single Stream

论文作者

Li, Ting S., Koposov, Sergey E., Erkal, Denis, Ji, Alexander P., Shipp, Nora, Pace, Andrew B., Hilmi, Tariq, Kuehn, Kyler, Lewis, Geraint F., Mackey, Dougal, Simpson, Jeffrey D., Wan, Zhen, Zucker, Daniel B., Bland-Hawthorn, Joss, Cullinane, Lara R., Da Costa, Gary S., Drlica-Wagner, Alex, Hattori, Kohei, Martell, Sarah L., Sharma, Sanjib

论文摘要

我们介绍了来自南部恒星流光谱调查($ S^5 $)的Atlas和Aliqa UMA流的第一光谱测量,并结合了来自Dark Energy Survey的光度数据和来自$ GAIA $的ASTRETROTRIC数据。从径向速度和适当运动中光谱构件的相干性,我们发现这两个系统极有可能是一个流的流,在天空上的形态和密度不连续(“扭结”特征)。我们将整个流称为Atlas-Aliqa UMA流或AAU流。我们对重型子结构的效果进行了全面的探索,发现只有与射手座矮人的相遇$ \ sim 0.5 $ gyr以前可以创建类似于观察到的“ kink”的功能。此外,我们还确定了与流宽度扩大相关的地图集组件中的两个差距(“扩展”特征)。这些差距很可能是由小质量遗产者(例如暗物质晕圈)产生的,因为AAU流是最遥远的冷溪,在溪流表面密度和天空上的流轨道上都有严重的变化。借助流轨道,流距离和运动学信息,我们确定了AAU流的轨道,并发现它受到了大型麦哲伦云的影响,从而导致正确的运动和流轨道之间的未对准。 AAU与孤儿 - Chenab流一起,是第二个流对,被发现是通过外部扰动分为两个段的单个流。

We present the first spectroscopic measurements of the ATLAS and Aliqa Uma streams from the Southern Stellar Stream Spectroscopic Survey ($S^5$), in combination with the photometric data from the Dark Energy Survey and astrometric data from $Gaia$. From the coherence of spectroscopic members in radial velocity and proper motion, we find out that these two systems are extremely likely to be one stream with discontinuity in morphology and density on the sky (the "kink" feature). We refer to this entire stream as the ATLAS-Aliqa Uma stream, or the AAU stream. We perform a comprehensive exploration of the effect of baryonic substructures and find that only an encounter with the Sagittarius dwarf $\sim 0.5$ Gyr ago can create a feature similar to the observed "kink". In addition, we also identify two gaps in the ATLAS component associated with the broadening in the stream width (the "broadening" feature). These gaps have likely been created by small mass perturbers, such as dark matter halos, as the AAU stream is the most distant cold stream known with severe variations in both the stream surface density and the stream track on the sky. With the stream track, stream distance and kinematic information, we determine the orbit of the AAU stream and find that it has been affected by the Large Magellanic Cloud, resulting in a misalignment between the proper motion and stream track. Together with the Orphan-Chenab Stream, AAU is the second stream pair that has been found to be a single stream separated into two segments by external perturbation.

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