论文标题

Upsilon SGR系统中剥离的主要的磁场,这是稀有氢缺陷二元组的成员

The magnetic field of the stripped primary in the upsilon Sgr system, a member of the rare class of hydrogen-deficient binaries

论文作者

Hubrig, S., Jarvinen, S. P., Ilyin, I., Schöller, M.

论文摘要

我们介绍了稀有氢缺陷型二元系统UPSILON SGR中光学显性成分的高分辨率光谱观测的结果。目前已知仅在非常晚的氦壳燃烧阶段,只有少数此类系统。从二进制系统中的供体恒星的传质通常会导致其氢包膜的剥离。因此,由于次要的质量增加了,因此似乎焕发青春。 Hubrig等人使用该系统的一些ESO FORS1低分辨率光谱观测。在2009年宣布了-70 -80G的磁场的存在。在这里,我们报告了最新的高分辨率ESO HARPS光谱图观察结果,表明Upsilon Sgr中的主要是频谱变量恒星,并且具有几十高斯的弱磁场。在这种罕见的缺乏氢的二元中,检测磁场特别令人感兴趣,因为这种系统经常被讨论为核心偏曲超新星和引力波源的可能祖细胞。对此类系统的未来磁研究将值得,可以更深入地了解磁场在二元系统中巨大恒星进化中的作用。

We present the results of high-resolution spectropolarimetric observations of the optically dominant component in the rare hydrogen-deficient binary system upsilon Sgr. Only a small number of such systems in a very late phase of helium shell burning are currently known. The mass transfer from the donor star in binary systems usually leads to the stripping of its hydrogen envelope. Consequently, since the mass of the secondary increases, it appears rejuvenated. Using a few ESO FORS1 low-resolution spectropolarimetric observations of this system, Hubrig et al. announced in 2009 the presence of a magnetic field of the order of -70 - -80G. Here we report on more recent high-resolution ESO HARPS spectropolarimetric observations showing that the primary in upsilon Sgr is a spectrum variable star and possesses a weak magnetic field of the order of a few tens of Gauss. The detection of a magnetic field in this rare hydrogen-deficient binary is of particular interest, as such systems are frequently discussed as probable progenitors of core-collapse supernovae and gravitational-wave sources. Future magnetic studies of such systems will be worthwhile to gain deeper insights into the role of magnetic fields in the evolution of massive stars in binary systems.

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