论文标题

银河中心附近的巨大恒星的2D运动学

2D kinematics of massive stars near the Galactic Center

论文作者

Libralato, Mattia, Lennon, Daniel J., Bellini, Andrea, van der Marel, Roeland, Clark, Simon J., Najarro, Francisco, Patrick, Lee R., Anderson, Jay, Bedin, Luigi R., Crowther, Paul A., de Mink, Selma E., Evans, Christopher J., Platais, Imants, Sabbi, Elena, Sohn, Sangmo Tony

论文摘要

靠近银河中心(GC)地区的大型恒星(MSS)提出了几个问题。 GC的恶劣环境有利于特定的形成场景,每种场景都应在MSS上构成特征性运动特征。我们基于使用哈勃太空望远镜获得的高精度适当运动,对围绕SGR A*的GC区域的MSS进行了2D运动学分析。由于仔细减少了数据,我们的适当动作目录中的明亮恒星的错误比0.5 mas yr $^{ - 1} $好。我们讨论了MSS在田间中的绝对运动及其相对于SGR A*,拱门和五重奏的运动。对于大多数MSS,我们仅使用运动学参数排除了与SGR A*相比3-4 kpc的任何距离。如果确认它们的GC成员资格,则大多数孤立的MSS可能与拱形或Quintuplet簇或SGR A*无关。只有少数MS具有适当的动作,表明它们可能是拱形群集的成员,这与以前的光谱结果一致。需要进一步阐明大多数巨大物体的起源需要透视线径向速度和距离。我们还对GC区域中的其他快速移动物体进行了分析,发现没有明显过量的高速逃脱恒星。我们公开提供我们的星空光度计目录。

The presence of massive stars (MSs) in the region close to the Galactic Center (GC) poses several questions about their origin. The harsh environment of the GC favors specific formation scenarios, each of which should imprint characteristic kinematic features on the MSs. We present a 2D kinematic analysis of MSs in a GC region surrounding Sgr A* based on high-precision proper motions obtained with the Hubble Space Telescope. Thanks to a careful data reduction, well-measured bright stars in our proper-motion catalogs have errors better than 0.5 mas yr$^{-1}$. We discuss the absolute motion of the MSs in the field and their motion relative to Sgr A*, the Arches and the Quintuplet. For the majority of the MSs, we rule out any distance further than 3-4 kpc from Sgr A* using only kinematic arguments. If their membership to the GC is confirmed, most of the isolated MSs are likely not associated with either the Arches or Quintuplet clusters or Sgr A*. Only a few MSs have proper motions suggesting they are likely members of the Arches cluster, in agreement with previous spectroscopic results. Line-of-sight radial velocities and distances are required to shed further light on the origin of most of these massive objects. We also present an analysis of other fast-moving objects in the GC region, finding no clear excess of high-velocity escaping stars. We make our astro-photometric catalogs publicly available.

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