论文标题

驾驶热星

The Driving of Hot Star Winds

论文作者

Sander, Andreas A. C.

论文摘要

在热星的政权中,直到紫外线天文学时代,风才被视为常见的事物。由于我们可以进入紫外线波长范围,因此很明显,风不是一个限于某些特殊物体的异国情调现象,而是在热恒星中无处不在。由于光谱线引起的不透明性是决定性成分,它使热巨大的恒星能够发出强大的风。尽管几十年前已经实现了这些所谓的线驱动风的基本原则,但它们的适当定量预测仍然是当今的主要挑战。建立的理论和经验描述使我们能够在所有天体物理量表上取得重大进展。但是,我们现在正在达到他们的局限性,因为我们仍然缺乏对热星的性质的各种基本见解,从而阻碍了我们得出更深入的结论,尤其是在与恒星或子赛车伴侣打交道时。这催生了新一代的研究人员,在观察和新理论方法中以尚未前所未有的细节水平寻找答案。 在这些程序中,将简要审查驾驶热星风的基本原则。从经典的CAK理论及其扩展开始,从蒙特卡洛和最近的基于框架的模拟上讲,将引入和模拟热星风的加速度的不同方法。该评论继续简要地讨论不稳定性,以及针对肥胖和狼射线星的定性和定量见解。此外,概述了同伴的挑战及其对辐射驱动风的影响。

In the regime of hot stars, winds were not seen as a common thing until the era of UV astronomy. Since we have access to the UV wavelength range, it has become clear that winds are not an exotic phenomenon limited to some special objects, but actually ubiquitous among hot and massive stars. The opacities due to spectral lines are the decisive ingredient that allows hot, massive stars to launch powerful winds. While the fundamental principles of these so-called line-driven winds have been realized decades ago, their proper quantitative prediction is still a major challenge today. Established theoretical and empirical descriptions have allowed us to make major progress on all astrophysical scales. However, we are now reaching their limitations as we still lack various fundamental insights on the nature of hot star winds, thereby hampering us from drawing deeper conclusions, not least when dealing with stellar or sub-stellar companions. This has spawned a new generation of researchers searching for answers with a yet unprecedented level of detail in observational and new theoretical approaches. In these proceedings, the fundamental principles of driving hot star winds will be briefly reviewed. Starting from the classical CAK theory and its extensions, over Monte Carlo and recent comoving-frame-based simulations, the different methods to describe and model the acceleration of hot star winds will be introduced. The review continues with briefly discussing instabilities as well as qualitative and quantitative insights for OB- and Wolf-Rayet-star winds. Moreover, the challenges of companions and their impact on radiation-driven winds are outlined.

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