论文标题

银河球状簇的哈勃太空望远镜紫外线遗产调查。 xxiii。适当运动目录和内部运动学

The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XXIII. Proper-motion catalogs and internal kinematics

论文作者

Libralato, M., Bellini, A., Vesperini, E., Piotto, G., Milone, A. P., van der Marel, R. P., Anderson, J., Aparicio, A., Barbuy, B., Bedin, L. R., Borsato, L., Cassisi, S., Dalessandro, E., Ferraro, F. R., King, I. R., Lanzoni, B., Nardiello, D., Ortolani, S., Sarajedini, A., Sohn, S. T.

论文摘要

许多研究基于$ \ textit {Hubble太空望远镜} $($ \ textit {hst} $)GO-13297程序“ HST对银河球形群集的HST遗产调查:对其种群和形成的紫外线散布的紫外线”调查了大型的球形群体和脉动的旋转群体的统治范围。在本文中,我们通过将注意力集中在恒星簇的内部运动学上来扩展以前的研究。我们通过将GO-13297图像与档案$ \ textit {hst} $数据相结合,计算了56个球状恒星和一个开放式群集的适当动作。迄今为止,随着本文发布的Astro光学测量表目录代表了恒星簇中恒星的正确运动,并扩展了当前(和将来的)$ \ textit {Gaia} $数据释放的信息,并扩展到许多Fainter星星和拥挤的中央区域。我们还通过计算其明亮成员的速度分散和各向异性径向谱,批准恒星簇的一般运动学特性。我们研究对浓度和放松时间的依赖性,并得出动态距离。最后,我们对球状簇NGC 5904进行了深入的运动学分析。

A number of studies based on data collected by the $\textit{Hubble Space Telescope}$ ($\textit{HST}$) GO-13297 program "HST Legacy Survey of Galactic Globular Clusters: Shedding UV Light on Their Populations and Formation" have investigated the photometric properties of a large sample of Galactic globular clusters and revolutionized our understanding of their stellar populations. In this paper, we expand previous studies by focusing our attention on the stellar clusters' internal kinematics. We computed proper motions for stars in 56 globular and one open clusters by combining the GO-13297 images with archival $\textit{HST}$ data. The astro-photometric catalogs released with this paper represent the most complete and homogeneous collection of proper motions of stars in the cores of stellar clusters to date, and expand the information provided by the current (and future) $\textit{Gaia}$ data releases to much fainter stars and into the crowded central regions. We also census the general kinematic properties of stellar clusters by computing the velocity-dispersion and anisotropy radial profiles of their bright members. We study the dependence on concentration and relaxation time, and derive dynamical distances. Finally, we present an in-depth kinematic analysis of the globular cluster NGC 5904.

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