论文标题

LB-1中的“隐藏”同伴被光谱揭示

The 'hidden' companion in LB-1 unveiled by spectral disentangling

论文作者

Shenar, T., Bodensteiner, J., Abdul-Masih, M., Fabry, M., Mahy, L., Marchant, P., Banyard, G., Bowman, D. M., Dsilva, K., Hawcroft, C., Reggiani, M., Sana, H.

论文摘要

引人入胜的LS V +22 25(LB-1)引起了人们的关注,因为它声称它是单衬的光谱二进制,其中79天的轨道轨道包括B型星和〜70 MSUN Black Hole。最近的分析表明,可见的初级恒星是一颗剥离的HE-HE恒星。但是,被认为是黑洞,中子恒星或主序列的次级性质仍然未知。基于26个新获得的光谱观测,我们进行了轨道分析和LB-1的光谱分离,以阐明系统的性质。我们的分析表明,LB-1包含光学中亮度可比亮度的两个组成部分。我们估计的狭窄衬里的原发性在光学中贡献了约55%,具有光谱特性,表明它是剥离的恒星:对于B型恒星,它具有较小的光谱质量(〜1 msun),并且是HE和N-HE和N-FING。 “隐藏”的次级占光学通量的约45%,是带有法定磁盘的迅速旋转(VSINI〜300 km/s)B3 V星 - 是明星。因此,LB-1不包含紧凑的对象。取而代之的是,这是一个罕见的是二进制系统,该系统由剥离的恒星(前群众供体)组成,并且是恒星在其临界速度接近(前质量增生器)附近旋转。该系统是一个明显的例子,即二元相互作用在快速恒星旋转器和BE恒星的生产中起决定性作用。

The intriguing binary LS V +22 25 (LB-1) has drawn much attention following claims of it being a single-lined spectroscopic binary with a 79-day orbit comprising a B-type star and a ~70 Msun black hole. Recent analyses have implied that the visible primary star is a stripped He-rich star. However, the nature of the secondary, which was proposed to be a black hole, a neutron star, or a main sequence star, remains unknown. Based on 26 newly acquired spectroscopic observations, we perform an orbital analysis and spectral disentangling of LB-1 to elucidate the nature of the system. Our analysis reveals that LB-1 contains two components of comparable brightness in the optical. The narrow-lined primary, which we estimate to contribute ~55% in the optical, has spectral properties that suggest that it is a stripped star: it has a small spectroscopic mass (~1 Msun) for a B-type star and it is He- and N-rich. The "hidden" secondary, which contributes about 45% of the optical flux, is a rapidly rotating (vsini ~ 300 km/s) B3 V star with a decretion disk -- a Be star. Hence, LB-1 does not contain a compact object. Instead, it is a rare Be binary system consisting of a stripped star (the former mass donor) and a Be star rotating at near its critical velocity (the former mass accretor). This system is a clear example that binary interactions play a decisive role in the production of rapid stellar rotators and Be stars.

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