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首页> 外文期刊>The Astrophysical journal >HUBBLE SPACE TELESCOPE PROPER MOTIONS ALONG THE SAGITTARIUS STREAM. I. OBSERVATIONS AND RESULTS FOR STARS IN FOUR FIELDS
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HUBBLE SPACE TELESCOPE PROPER MOTIONS ALONG THE SAGITTARIUS STREAM. I. OBSERVATIONS AND RESULTS FOR STARS IN FOUR FIELDS

机译:射手流沿太空望远镜的适当运动。 I.四场星的观测和结果

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We present a multi-epoch Hubble Space Telescope (HST) study of stellar proper motions (PMs) for four fields spanning 200° along the Sagittarius (Sgr) stream: one trailing arm field, one field near the Sgr dwarf spheroidal tidal radius, and two leading arm fields. We determine absolute PMs of dozens of individual stars per field, using established techniques that use distant background galaxies as the stationary reference frame. Stream stars are identified based on combined color–magnitude diagram and PM information. The results are broadly consistent with the few existing PM measurements for the Sgr galaxy and the trailing arm. However, our new results provide the highest PM accuracy for the stream to date, the first PM measurements for the leading arm, and the first PM measurements for individual stream stars; we also serendipitously determine the PM of the globular cluster NGC 6652. In the trailing-arm field, the individual PMs allow us to kinematically separate trailing-arm stars from leading-arm stars that are 360° further ahead in their orbit. Also, in three of our fields we find indications that two distinct kinematical components may exist within the same arm and wrap of the stream. Qualitative comparison of the HST data to the predictions of the Law & Majewski and Pe?arrubia et al. N-body models show that the PM measurements closely follow the predicted trend with Sgr longitude. This provides a successful consistency check on the PM measurements, as well as on these N-body approaches (which were not tailored to fit any PM data).
机译:我们针对沿人马座(Sgr)流跨200°的四个场进行了一次多星哈勃太空望远镜(HST)恒星固有运动(PM)研究:一个后臂场,一个靠近Sgr矮球体潮汐半径的场,以及两个领导领域。我们使用将遥远的背景星系作为静止参考系的既定技术,确定每个场中数十颗独立恒星的绝对PM。根据组合的色度图和PM信息识别流星。结果与Sgr星系和后臂的少量现有PM测量值基本一致。但是,我们的新结果提供了迄今为止最高的PM精度,前臂的首次PM测量以及单个流星的首次PM测量。我们还偶然地确定了球状星团NGC 6652的PM。在后臂领域中,单个PM使我们能够从运动学角度将前臂恒星与在其轨道前方360°的前臂恒星分开。同样,在我们的三个领域中,我们发现有迹象表明,在同一股水流和水流中可能存在两种不同的运动学成分。 HST数据与Law&Majewski和Pe?arrubia等人的预测的定性比较。 N体模型显示,PM测量值与Sgr经度密切符合预测趋势。这样就可以成功地对PM测量以及这些N体方法(不适用于任何PM数据进行量身定制)进行一致性检查。

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