论文标题
狼射线星的神秘风:由动态一致的大气建模产生
The enigmatic winds of Wolf-Rayet stars: Results from dynamically consistent atmosphere modelling
论文作者
论文摘要
线驱动的恒星风在热巨星中无处不在。在某些情况下,它们可能会变得如此强大,以至于整颗恒星被光学厚的风掩盖。强大的流出产生了较大的排放线,定义了所谓的狼射线(WR)恒星。尽管是巨大恒星演变的主要参与者,但沉重的黑洞的形成以及元素的分布,WR风的发生和性质仍然很神秘。 有前途的理论理解的有前途的工具是出色的气氛,允许始终如一地包含流体动力学。通过将恒星和风参数耦合,并包含详细的非LTE辐射转移,它们使我们能够在可观察的层下方,研究WR型风的发作。建立较大的模型,我们能够通过识别质量和金属性的趋势来取得突破性的进步,这些趋势与当前的经验描述显着偏离。我们的建模工作揭示了具有强,非线性依赖性的WR型风的复杂图片。除了覆盖金属性和质量外,我们还将表面氢确定为在较低金属性下保持WR型质量损失的重要成分。在这里,我们介绍了有关大型恒星中WR型风的性质和发作的最新见解,包括对恒星进化的后果,剩下的开放性问题以及当前的克服努力。
Line-driven stellar winds are ubiquitous among hot massive stars. In some cases they can become so strong, that the whole star is cloaked by an optically thick wind. The strong outflow gives rise to large emission lines, defining the class of so-called Wolf-Rayet (WR) stars. While being major players in the evolution of massive stars, the formation of heavy black holes,and the distribution of elements, the occurrence and nature of WR winds is still quite enigmatic. A promising instrument towards a better theoretical understanding are stellar atmospheres allowing for a consistent inclusion of the hydrodynamics. By coupling stellar and wind parameters and the inclusion of a detailed non-LTE radiative transfer, they allow us to go beneath the observable layers and study the onset of WR-type winds. Establishing larger sets of models, we were able to make ground-breaking progress by identifying trends with mass and metallicity that deviate significantly from present empirical descriptions. Our modelling efforts reveal a complex picture for WR-type winds with strong, non-linear dependencies. Besides covering metallicity and mass, we further identify surface hydrogen as an important ingredient to retain WR-type mass loss at lower metallicity. Here, we present a summary of recent insights on the nature and onset of WR-type winds in massive stars including the consequences for stellar evolution, remaining open questions, and current efforts to overcome them.