论文标题
在缓慢旋转的年轻和进化的星星中的常见发电机缩放
Common dynamo scaling in slowly rotating young and evolved stars
论文作者
论文摘要
晚期恒星的活性和磁性的一种解释是,它们都随着降低到饱和水平的降低而增强,这表明恒星的发电机均取决于旋转和对流湍流。但是,一些研究声称,单独旋转足以对此缩放进行足够的参数。在这里,我们通过在旋转活性关系的分析中包括进化后的主序列星来解决湍流与恒星发电机的相关性问题。与主要序列恒星相比,这些恒星旋转非常缓慢,但表现出相似的活性水平。我们表明,两个进化阶段属于旋转活性图,并在不饱和制度中形成单个序列,仅与恒星模型得出的rossby数字相关,从而确认了早期的初步结果,这些结果依赖于对流失误时间的更简单的参数化。这反映了完全对流的M矮人的最新结果,这些结果同样属于与部分对流太阳能型恒星相同的旋转活性序列。我们的结果表明,湍流在驱动恒星发电机中起着至关重要的作用,并表明有一种常见的与湍流相关的发电机机制来解释所有晚期恒星的磁性活性。
One interpretation of the activity and magnetism of late-type stars is that these both intensify with decreasing Rossby number up to a saturation level, suggesting that stellar dynamos depend on both rotation and convective turbulence. Some studies have claimed, however, that rotation alone suffices to parametrise this scaling adequately. Here, we tackle the question of the relevance of turbulence to stellar dynamos by including evolved, post main sequence stars in the analysis of the rotation-activity relation. These stars rotate very slowly compared with main sequence stars, but exhibit similar activity levels. We show that the two evolutionary stages fall together in the rotation-activity diagram and form a single sequence in the unsaturated regime in relation only to Rossby numbers derived from stellar models, confirming earlier preliminary results that relied on a more simplistic parametrisation of the convective turnover time. This mirrors recent results of fully convective M dwarfs, which likewise fall on the same rotation-activity sequence as partially convective solar-type stars. Our results demonstrate that turbulence plays a crucial role in driving stellar dynamos and suggest that there is a common turbulence-related dynamo mechanism explaining the magnetic activity of all late-type stars.