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Stellar mergers as the origin of magnetic massive stars

机译:恒星合并是磁性大质量恒星的起源

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About ten per cent of 'massive' stars (those of more than 1.5 solar masses) have strong, large-scale surface magnetic fields(1-3). It has been suggested that merging of main-sequence and pre- main-sequence stars could produce such strong fields(4,5), and the predicted fraction of merged massive stars is also about ten per cent(6,7). The merger hypothesis is further supported by a lack of magnetic stars in close binaries(8,9), which is as expected if mergers produce magnetic stars. Here we report three-dimensional magnetohydrodynamical simulations of the coalescence of two massive stars and follow the evolution of the merged product. Strong magnetic fields are produced in the simulations, and the merged star rejuvenates such that it appears younger and bluer than other coeval stars. This can explain the properties of the magnetic 'blue straggler' star tau Sco in the Upper Scorpius association that has an observationally inferred, apparent age of less than five million years, which is less than half the age of its birth association(10). Such massive blue straggler stars seem likely to be progenitors of magnetars, perhaps giving rise to some of the enigmatic fast radio bursts observed(11), and their supernovae may be affected by their strong magnetic fields(12).
机译:大约百分之十的“大质量”恒星(超过1.5个太阳质量的恒星)具有强的,大规模的表面磁场(1-3)。有人提出,主序星和主序前星的合并会产生如此强的场(4,5),而合并大质量星的预测比例也约为百分之十(6,7)。合并假说进一步得到了紧密双星中缺乏磁星的支持(8,9),这在合并产生磁星的情况下是可以预期的。在这里,我们报告了两个大质量恒星合并的三维磁流体动力学模拟,并跟踪了合并产物的演化。在模拟中会产生强磁场,并且合并后的恒星会重新焕发活力,使其看起来比其他同时代恒星更年轻,更蓝。这可以解释上天蝎座协会中具有磁性的``蓝松散的''星头星Sco的性质,该星团的观测年龄明显少于500万年,不到其出生协会年龄的一半(10)。如此庞大的蓝色散流星似乎是磁星的祖先,也许会引起一些神秘的快速无线电脉冲爆发(11),它们的超新星可能会受到强磁场的影响(12)。

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  • 来源
    《Nature》 |2019年第7777期|211-214|共4页
  • 作者单位

    Heidelberg Univ Astron Rechen Inst Zentrum Astron Heidelberg Germany|Heidelberger Inst Theoret Studien Heidelberg Germany|Univ Oxford Dept Phys Oxford England;

    Heidelberger Inst Theoret Studien Heidelberg Germany|Max Planck Comp & Data Facil Garching Germany;

    Univ Oxford Dept Phys Oxford England;

    Heidelberger Inst Theoret Studien Heidelberg Germany|Heidelberg Univ Inst Theoret Astrophys Zentrum Astron Heidelberg Germany;

    Max Planck Inst Astrophys Garching Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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