论文标题

从双层二进制合并中发现了高度磁性的HE-SDO星星

Discovery of a highly magnetic He-sdO star from a double-degenerate binary merger

论文作者

Dorsch, M., Reindl, N., Pelisoli, I., Heber, U., Geier, S., Istrate, A. G., Justham, S.

论文摘要

光谱型O(HE-SDO)的氦气富含热的细分星被认为是恒星合并残留物的主要候选者。这样的事件应导致强磁场的产生。然而,尽管白矮星(Hot the Hot Dwarf Stars)(热型恒星的后代)中的磁性率很高(20%),但仍未发现磁性HE-SDO。在这里,我们介绍了从He-SDO的光学X-Shooter Spectrum中发现的强磁场(B = 353 $ \ pm $ 10 kg),并在HE-SDO的光X-Shooter Spectrum中发现,并介绍任何磁性热spdwarf的第一个光谱分析。为此,我们使用了线条字母的Tlusty非本地热力学平衡模型,并假设一个简单的均匀磁场。派生的大气参数$ t_ \ mathrm {eff} $ = 44900 $ \ pm $ \ pm $ 1000 k,log g = 5.93 $ \ pm $ 0.15对于HE-SDO星而言是典型的,而星星的氢气较低,而不是大多数He-Sdos在log N(He)/N(He)/N(H)= +0.28 $ 0.0.10的He-Sdos。恒星是一个慢速旋转器($ v_ \ mathrm {rot} \ sin i $ <40 km s $^{ - 1} $)。它的化学成分是富含n的和c和o-poor的,Si和S的丰度接近太阳能。将大气参数与Gaia视差和光度法结合在一起,发现恒星半径和光度对于He-Sdos来说是典型的,并将恒星放在Hertzsprung-Russell图中的氦气主序列上。它的质量为$ 0.93^{+0.44} _ { - 0.30} $ $ $ m_ \ odot $,尽管不确定,但似乎非常高。强磁场以及大气参数和金属丰度为双层合并方案提供了压倒性的证据。

Helium-rich hot subdwarf stars of spectral type O (He-sdO) are considered prime candidates for stellar merger remnants. Such events should lead to the generation of strong magnetic fields. However, no magnetic He-sdO has yet been unambiguously discovered despite the high magnetic rate (20%) among white dwarf stars, the progeny of hot subdwarfs. Here we present the discovery of a strong magnetic field (B = 353 $\pm$ 10 kG) from Zeeman-split hydrogen, helium, and metal lines in the optical X-SHOOTER spectrum of an He-sdO and present the first spectroscopic analysis of any magnetic hot subdwarf. For this we used line-blanketed Tlusty non-local thermodynamic equilibrium models and assumed a simple homogeneous magnetic field. The derived atmospheric parameters $T_\mathrm{eff}$ = 44900 $\pm$ 1000 K and log g = 5.93 $\pm$ 0.15 are typical for He-sdO stars, while the star is less hydrogen-poor than most He-sdOs at log n(He)/n(H) = +0.28 $\pm$ 0.10. The star is a slow rotator ($v_\mathrm{rot}\sin i$ < 40 km s$^{-1}$). Its chemical composition is N-rich and C- and O-poor, and the Si and S abundances are close to solar. Combining the atmospheric parameters with Gaia parallax and photometry, the stellar radius and luminosity are found to be typical for He-sdOs and place the star on the helium main sequence in the Hertzsprung-Russell diagram. Its mass of $0.93^{+0.44}_{-0.30}$ $M_\odot$, although uncertain, appears to be remarkably high. The strong magnetic field along with the atmospheric parameters and metal abundances provide overwhelming evidence for the double-degenerate merger scenario.

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