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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >Radial velocity measurements and orbit determination of eight single-lined spectroscopic binary systems
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Radial velocity measurements and orbit determination of eight single-lined spectroscopic binary systems

机译:径向速度测量和轨道测定八个单衬型光谱二元系统

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Since early 2015, a new radial velocity monitoring campaign is going on at the University Observatory Jena. The aim of this project is to obtain current radial velocity measurements of selected single-lined spectroscopic binary systems as well as to redetermine and/or constrain their orbital solutions. In this paper, we characterize the properties of the target sample of the project, describe the spectroscopic observations, data reduction, and analysis, and present the first results of the project, taken with the fiber-linked astronomical spectrograph FLECHAS. We present 391 radial velocity measurements of eight spectroscopic binaries, which were taken within an epoch difference of 1.6 years. These radial velocities were used to determine the spectroscopic orbital elements of the observed binary systems, which exhibit orbital periods in the range between nearly one up to several dozens of days.We could constrain the orbital solutions of seven of these binary systems, and redetermine the orbital solution of Φ Dra, whose orbit exhibits >4 times longer orbital period and is more eccentric than given in the 9th Catalogue of Spectroscopic Binary Orbits.
机译:自2015年初以来,在大学天文台耶拿进行了新的径向速度监测活动。该项目的目的是获得所选单衬里光谱二元系统的当前径向速度测量,以及重新测定和/或约束其轨道解决方案。在本文中,我们表征了项目目标样本的性质,描述了光谱观测,数据减少和分析,并呈现了与纤维连接天文光谱仪FECHAS的项目的第一个结果。我们介绍了八一的光谱速度测量的径向速度测量,这是在1.6岁的时代差异的差异。这些径向速度用于确定所观察到的二元系统的光谱轨道元素,其在近似近几天的范围内展示轨道周期。我们可以限制七个这些二元系统的轨道解决方案,并重新确定φDRA的轨道溶液,其轨道显示器展示> 4倍延长轨道周期,比光谱二进制轨道的第9次目录中更偏心。

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