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首页> 外文期刊>The Astrophysical journal >BURN OUT OR FADE AWAY? ON THE X-RAY AND MAGNETIC DEATH OF INTERMEDIATE MASS STARS
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BURN OUT OR FADE AWAY? ON THE X-RAY AND MAGNETIC DEATH OF INTERMEDIATE MASS STARS

机译:烧光还是褪色?中等质量恒星的X射线和磁死亡

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摘要

The nature of the mechanisms apparently driving X-rays from intermediate mass stars lacking strong convection zones or massive winds remains poorly understood, and the possible role of hidden, lower mass close companions is still unclear. A 20 ks Chandra HRC-I observation of HR 4796A, an 8?Myr old main sequence A0 star devoid of close stellar companions, has been used to search for a signature or remnant of magnetic activity from the Herbig Ae phase. X-rays were not detected and the X-ray luminosity upper limit was LX ≤ 1.3 × 1027 erg s–1. The result is discussed in the context of various scenarios for generating magnetic activity, including rotational shear and subsurface convection. A dynamo driven by natal differential rotation is unlikely to produce observable X rays, chiefly because of the difficulty in getting the dissipated energy up to the surface of the star. A subsurface convection layer produced by the ionization of helium could host a dynamo that should be effective throughout the main sequence but can only produce X-ray luminosities of the order 1025 erg s–1. This luminosity lies only moderately below the current detection limit for Vega. Our study supports the idea that X-ray production in Herbig Ae/Be stars is linked largely to the accretion process rather than the properties of the underlying star, and that early A stars generally decline in X-ray luminosity at least 100,000 fold in only a few million years.
机译:从缺乏强对流区或强风的中等质量恒星驱动X射线的机制的性质仍然知之甚少,而且隐藏的,质量较小的近伴的可能作用仍不清楚。一个20 ks Chandra HRC-1观测到的HR 4796A,是一个8?Myr的主要主序A0星,没有紧密的恒星伴星,已被用于从Herbig Ae相中寻找磁活动的特征或残余。未检测到X射线,X射线发光度上限为LX≤1.3×1027 erg s-1。将在包括旋转剪切和地下对流在内的各种产生磁活动的情况下讨论结果。由出生差异旋转驱动的发电机不太可能产生可观察到的X射线,这主要是因为很难将耗散的能量传到恒星的表面。氦离子化产生的地下对流层可能带有发电机,该发电机在整个主要序列中都应有效,但只能产生1025 erg s-1的X射线光度。该亮度仅适度低于Vega的当前检测极限。我们的研究支持以下观点:Hertig Ae / Be恒星的X射线产生在很大程度上与吸积过程有关,而不是与潜在恒星的性质有关,并且早期A恒星的X射线发光度通常仅下降至少100,000倍。几百万年。

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