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9?Sagittarii: uncovering an O-type spectroscopic binary with an 8.6?year period

机译:9,射手座:发现一个周期为8.6年的O型分光镜

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Context. The O-type object 9?Sgr is a well-known synchrotron radio emitter. This feature is usually attributed to colliding-wind binary systems, but 9?Sgr was long considered a single star. Aims. We have conducted a long-term spectroscopic monitoring of this star to investigate its multiplicity and search for evidence for wind-wind interactions. Methods. Radial velocities are determined and analysed using various period search methods. Spectral disentangling is applied to separate the spectra of the components of the binary system. Results. We derive the first ever orbital solution of?9?Sgr. The system is found to consist of an O3.5?V((f+)) primary and an O5-5.5?V((f)) secondary moving around each other on a highly eccentric (e?=?0.7), 8.6?year orbit. The spectra reveal no variable emission lines that could be formed in the wind interaction zone in agreement with the expected properties of the interaction in such a wide system. Conclusions. Our results provide further support to the paradigm of synchrotron radio emission from early-type stars being a manifestation of interacting winds in a binary system.
机译:上下文。 O型物体9→Sgr是众所周知的同步加速器无线电发射器。此功能通常归因于碰撞风双星系统,但9?Sgr长期以来一直被视为单星。目的我们对这颗恒星进行了长期的光谱监测,以调查其多样性并寻找风-风相互作用的证据。方法。使用各种周期搜索方法确定并分析径向速度。应用光谱解缠结来分离二元系统各组分的光谱。结果。我们推导出第一个“ 9” Sgr的轨道解。发现该系统由一个O3.5?V((f +))初级线圈和一个O5-5.5?V((f))次级线圈组成,它们在高度偏心(e?=?0.7),8.6?上相互绕动。年轨道。光谱显示,在如此宽的系统中,与相互作用的预期特性一致,在风相互作用区域中不会形成可变的发射线。结论。我们的结果进一步支持了早型恒星发出的同步加速器无线电发射范例,这是双星系统中相互作用的风的体现。

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