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首页> 外文期刊>The Astrophysical Journal. Supplement Series >sunstardb : A Database for the Study of Stellar Magnetism and the Solar-stellar Connection
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sunstardb : A Database for the Study of Stellar Magnetism and the Solar-stellar Connection

机译:SunstardB:用于研究恒星磁力和太阳能恒星连接的数据库

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摘要

The "solar-stellar connection" began as a relatively small field of research focused on understanding the processes that generate magnetic fields in stars and sometimes lead to a cyclic pattern of long-term variability in activity, as demonstrated by our Sun. This area of study has recently become more broadly pertinent to questions of exoplanet habitability and exo-space weather, as well as stellar evolution. In contrast to other areas of stellar research, individual stars in the solar-stellar connection often have a distinct identity and character in the literature, due primarily to the rarity of the decades-long time-series that are necessary for studying stellar activity cycles. Furthermore, the underlying stellar dynamo is not well understood theoretically, and is thought to be sensitive to several stellar properties, e.g., luminosity, differential rotation, and the depth of the convection zone, which in turn are often parameterized by other more readily available properties. Relevant observations are scattered throughout the literature and existing stellar databases, and consolidating information for new studies is a tedious and laborious exercise. To accelerate research in this area I developed sunstardb, a relational database of stellar properties and magnetic activity proxy time-series keyed by individual named stars. The organization of the data eliminates the need for the problematic catalog cross-matching operations inherent when building an analysis data set from heterogeneous sources. In this article I describe the principles behind sunstardb, the data structures and programming interfaces, as well as use cases from solar-stellar connection research.
机译:“太阳能恒星连接”开始作为一个相对较小的研究领域,专注于了解在恒星中产生磁场的过程,有时导致活动的长期变异性的循环模式,如我们的太阳所证明的那样。该研究领域最近与外产居住地和外部空间的问题以及恒星演变的问题变得更加广泛。与恒星研究的其他领域相比,太阳能恒星连接中的个体恒星通常在文献中具有不同的身份和特征,主要是由于学习恒星活性周期所需的数十年的长期时间序列的罕见性。此外,基础恒星发电机在理论上并不顺利地理解,并且被认为对几个恒星性质(例如,透明度,差分旋转)和对流区域的深度敏感,这又通过其他更容易可用的特性参数化。相关观察分散在整个文献和现有的恒星数据库中,并巩固新研究的信息是一种繁琐而艰苦的运动。为了加速研究在该领域,我开发了SunstardB,由独立名为Sharts的个体的恒星属性和磁性活动代理时间系列的关系数据库。数据组织消除了在构建来自异构源集的分析数据时固有的有问题的目录交叉匹配操作。在本文中,我描述了SunstardB,数据结构和编程接口的原则,以及太阳能恒星连接研究的用例。

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