How Reliable are Rotation Period Determinations from TESS Data?

Mariel Lares-Martiz, Derek Buzasi, Terry Oswalt, Krystian Confeiteiro, Ahnika Gee, Luca Guida, Ryan Reynolds, Melinda Walls
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Abstract

Gyrochronology is the empirical relation between rotation and age. NASA's Transiting Exoplanet Survey Satellite (TESS), Kepler, and K2 missions have observed thousands of wide main sequence binaries. Since components of a binary are coeval, their rotation periods should be consistent with gyrochronology models. However, the usefulness of gyrochronology depends upon reliable rotation periods. We explore the reliability of rotation period determinations for a sample of wide binary components from the TESS cycle 3. Wide binaries with the most reliable rotation period determinations provide a strong basis for testing whether the gyrochronology empirical relation derived from open clusters is also valid for field stars.
根据 TESS 数据确定自转周期的可靠性如何?
陀螺年代学是自转和年龄之间的经验关系。美国宇航局的凌日系外行星巡天卫星(TESS)、开普勒和 K2 任务已经观测到数千个宽主序双星。由于双星的组成部分是共生的,它们的自转周期应该与陀螺年代学模型一致。然而,陀螺年代学的实用性取决于可靠的自转周期。我们对 TESS 周期 3 中的宽双星成分样本的自转周期测定的可靠性进行了探讨。具有最可靠旋转周期测定结果的宽双星为检验从疏散星团中得出的陀螺年代学经验关系是否也适用于野外恒星提供了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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