论文标题

94 AQR AA中旋转和磁性活性的演变来自星空学的苔丝

The Evolution of Rotation and Magnetic Activity in 94 Aqr Aa from Asteroseismology with TESS

论文作者

Metcalfe, Travis S., van Saders, Jennifer L., Basu, Sarbani, Buzasi, Derek, Chaplin, William J., Egeland, Ricky, Garcia, Rafael A., Gaulme, Patrick, Huber, Daniel, Reinhold, Timo, Schunker, Hannah, Stassun, Keivan G., Appourchaux, Thierry, Ball, Warrick H., Bedding, Timothy R., Deheuvels, Sebastien, Gonzalez-Cuesta, Lucia, Handberg, Rasmus, Jimenez, Antonio, Kjeldsen, Hans, Li, Tanda, Lund, Mikkel N., Mathur, Savita, Mosser, Benoit, Nielsen, Martin B., Noll, Anthony, Orhan, Zeynep Celik, Ortel, Sibel, Santos, Angela R. G., Yildiz, Mutlu, Baliunas, Sallie, Soon, Willie

论文摘要

以前的大多数校准旋转和磁性活动如何取决于恒星年龄和质量的努力都取决于簇的观察,其中使用恒星进化模型的等句来确定整体的性质。 Asterosemology采用相似的模型来通过匹配其正常的振荡模式来测量单个星的性质,从而使恒星年龄和质量高精度。我们使用从过渡系外行星调查卫星进行的27天的光度法来表征94 AQR三重系统的G8子巨头中的太阳样振荡。当与Mount Wilson HK项目的35年活动测量的重新分析结合使用时,所产生的恒星性能使我们能够探测系统中旋转和磁性活性的演变。亚巨头的呼吸震动年龄与恒星的同弦拟合一致,但是旋转期比角动量演化的标准模型的预期要短得多。我们得出的结论是,可能需要弱化的磁制动来重现恒星特性,并且在氢壳燃烧阶段进化的亚巨人可以振兴大规模的发电机动作,并在升上红色巨型分支之前短暂地维持磁性活动周期。

Most previous efforts to calibrate how rotation and magnetic activity depend on stellar age and mass have relied on observations of clusters, where isochrones from stellar evolution models are used to determine the properties of the ensemble. Asteroseismology employs similar models to measure the properties of an individual star by matching its normal modes of oscillation, yielding the stellar age and mass with high precision. We use 27 days of photometry from the Transiting Exoplanet Survey Satellite to characterize solar-like oscillations in the G8 subgiant of the 94 Aqr triple system. The resulting stellar properties, when combined with a reanalysis of 35 yr of activity measurements from the Mount Wilson HK project, allow us to probe the evolution of rotation and magnetic activity in the system. The asteroseismic age of the subgiant agrees with a stellar isochrone fit, but the rotation period is much shorter than expected from standard models of angular momentum evolution. We conclude that weakened magnetic braking may be needed to reproduce the stellar properties, and that evolved subgiants in the hydrogen shell-burning phase can reinvigorate large-scale dynamo action and briefly sustain magnetic activity cycles before ascending the red giant branch.

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