论文标题
主要序列中的对流地图集
An Atlas of Convection in Main-Sequence Stars
论文作者
论文摘要
对流无处不在,在许多不同的条件下发生。在这里,我们通过两个镜头探索主要序列恒星中的对流:由恒星结构和参数引起的无量纲参数,这些参数来自混合长度理论的应用。我们首先用熟悉1D恒星进化社区和流体动力学界的熟悉的术语来定义每个数量。然后,我们探讨了这些数量在不同对流区域,不同质量和主要序列进化阶段的变化。我们发现恒星对流区域之间的巨大多样性。对流发生在薄壳,深层信封和近乎球形的核心中。它可能是效率低下,旋转约束,跨性别者或深度亚音速的有效效率。该地图集通过指示在给定恒星中的哪些对流状态以及描述数值模拟的适当模型假设,是对对流的未来理论和观察性研究的指南。
Convection is ubiquitous in stars and occurs under many different conditions. Here we explore convection in main-sequence stars through two lenses: dimensionless parameters arising from stellar structure and parameters which emerge from the application of mixing length theory. We first define each quantity in terms familiar both to the 1D stellar evolution community and the hydrodynamics community. We then explore the variation of these quantities across different convection zones, different masses, and different stages of main-sequence evolution. We find immense diversity across stellar convection zones. Convection occurs in thin shells, deep envelopes, and nearly-spherical cores; it can be efficient of inefficient, rotationally constrained or not, transsonic or deeply subsonic. This atlas serves as a guide for future theoretical and observational investigations by indicating which regimes of convection are active in a given star, and by describing appropriate model assumptions for numerical simulations.