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首页> 外文期刊>Astronomy and astrophysics >A VLT/FLAMES survey for massive binaries in Westerlund 1 - III. The WC9d binary W239 and implications for massive stellar evolution
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A VLT/FLAMES survey for massive binaries in Westerlund 1 - III. The WC9d binary W239 and implications for massive stellar evolution

机译:对Westerlund 1-III中的大量二进制文件进行的VLT / FLAMES调查。 WC9d二进制W239及其对大规模恒星演化的启示

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Context. There is growing evidence that a treatment of binarity amongst OB stars is essential for a full theory of stellar evolution. However the binary properties of massive stars – frequency, mass ratio & orbital separation – are still poorly constrained. Aims. In order to address this shortcoming we have undertaken a multiepoch spectroscopic study of the stellar population of the young massive cluster Westerlund?1. In this paper we present an investigation into the nature of the dusty Wolf-Rayet star and candidate binary W239. Methods. To accomplish this we have utilised our spectroscopic data in conjunction with multi-year optical and near-IR photometric observations in order to search for binary signatures. Comparison of these data to synthetic non-LTE model atmosphere spectra were used to derive the fundamental properties of the WC9 primary. Results. We found W239 to have an orbital period of only ?~5.05?days, making it one of the most compact WC binaries yet identified. Analysis of the long term near-IR lightcurve reveals a significant flare between 2004-6. We interpret this as evidence for a third massive stellar component in the system in a long period (>6?yr), eccentric orbit, with dust production occuring at periastron leading to the flare. The presence of a near-IR excess characteristic of hot (~1300?K) dust at every epoch is consistent with the expectation that the subset of persistent dust forming WC stars are short (<1?yr) period binaries, although confirmation will require further observations. Non-LTE model atmosphere analysis of the spectrum reveals the physical properties of the WC9 component to be fully consistent with other Galactic examples. Conclusions. The simultaneous presence of both short period Wolf-Rayet binaries and cool hypergiants within Wd?1 provides compelling evidence for a bifurcation in the post-Main Sequence evolution of massive stars due to binarity. Short period O+OB binaries will evolve directly to the Wolf-Rayet phase, either due to an episode of binary mediated mass loss – likely via case A mass transfer or a contact configuration – or via chemically homogenous evolution. Conversely, long period binaries and single stars will instead undergo a red loop across the HR diagram via a cool hypergiant phase. Future analysis of the full spectroscopic dataset for Wd?1 will constrain the proportion of massive stars experiencing each pathway; hence quantifying the importance of binarity in massive stellar evolution up to and beyond supernova and the resultant production of relativistic remnants.
机译:上下文。越来越多的证据表明,对于完整的恒星演化理论,OB恒星之间的二元性处理至关重要。然而,大质量恒星的二元性质(频率,质量比和轨道间隔)仍然受约束较弱。目的为了解决这个缺点,我们对年轻的大规模星团Westerlund?1的恒星种群进行了多时代光谱研究。在本文中,我们对尘土飞扬的Wolf-Rayet星和候选双星W239的性质进行了研究。方法。为此,我们将光谱数据与多年光学和近红外光度学观测结合使用,以搜索二进制特征。将这些数据与合成的非LTE模型大气光谱进行比较,即可得出WC9 Primary的基本特性。结果。我们发现W239的轨道周期只有~~ 5.05天,使其成为迄今发现的最紧凑的WC双星之一。对长期近红外光曲线的分析显示,在2004-6年之间有明显的耀斑。我们将其解释为是在很长一段时间(> 6?yr)内系统中存在第三块巨大恒星组成的证据,即偏心轨道,并且在星云周围产生了粉尘,从而导致了耀斑。在每个时期都存在热(〜1300?K)尘埃的近红外过剩特征,这与对形成WC恒星的持久性粉尘的子集是短(<1?yr)周期双星的期望相一致,尽管需要进行确认。进一步的观察。频谱的非LTE模型大气分析显示WC9组件的物理属性与其他Galactic示例完全一致。结论。 Wd?1内同时存在短时Wolf-Rayet双星和凉爽的超巨星,提供了令人信服的证据,表明由于二值性,大质量恒星的主序列后演化发生了分歧。短期O + OB二元将直接演变为Wolf-Rayet相,这可能是由于二元介导的质量损失(可能是通过案例A传质或接触构型)或化学上均一的演化所致。相反,长时间的双星和单颗星将通过凉爽的超巨相在HR图上经历一个红色循环。 Wd?1的完整光谱数据集的未来分析将约束经历每个路径的大质量恒星的比例;因此,量化了二元性在超新星及以后的大规模恒星演化中的重要性,以及由此产生的相对论性残余物的数量。

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