论文标题

基本场中金属依赖性自旋进化的证据

Evidence for Metallicity-Dependant Spin Evolution in the Kepler field

论文作者

Amard, L., Roquette, J., Matt, S. P.

论文摘要

最近,由于Gaia和Kepler Spacecraft的数据,最近揭示了开普勒场的颜色刻度级期图(CMPD)中的奇怪旋转周期分布。发现红色和明亮的恒星的旋转速度慢于主序列的其余部分。从理论方面来说,已经证明金属性应影响恒星的旋转演变,以及它们在Hertzprung-Rüssel或颜色数字图中的演变。在这项工作中,我们将该数据集与中和高分辨率的光谱金属性结合在一起,并在给定的质量范围内仔细选择主序列单星。我们表明,CMPD中看到的结构也对应于金属性和旋转之间的广泛相关性,因此,金属性较高的恒星平均旋转速度比金属低的恒星旋转较慢。我们将该样品与包括一系列不同金属率的理论旋转演化模型进行了比较。他们预测旋转速率和金属性之间的相关性在相同的方向和与观察到的相同大小的相关性。因此,金属性似乎是解释观察到的旋转周期分布的关键参数。我们还讨论了几种不同的方式,由于观察性偏见和年龄分布以及对恒星风扭矩的影响,金属性会影响观察到的旋转时期的分布。

A curious rotation period distribution in the Color-Magnitude-Period Diagram (CMPD) of the Kepler field was recently revealed, thanks to data from Gaia and Kepler spacecraft. It was found that redder and brighter stars are spinning slower than the rest of the main sequence. On the theoretical side, it was demonstrated that metallicity should affect the rotational evolution of stars as well as their evolution in the Hertzprung-Rüssel or Color-Magnitude diagram. In this work we combine this dataset with medium and high resolution spectroscopic metallicities and carefully select main sequence single stars in a given mass range. We show that the structure seen in the CMPD also corresponds to a broad correlation between metallicity and rotation, such that stars with higher metallicity rotate on average more slowly than those with low metallicity. We compare this sample to theoretical rotational evolution models that include a range of different metallicities. They predict a correlation between rotation rate and metallicity that is in the same direction and of about the same magnitude as that observed. Therefore metallicity appears to be a key parameter to explain the observed rotation period distributions. We also discuss a few different ways in which metallicity can affect the observed distribution of rotation period, due to observational biases and age distributions, as well as the effect on stellar wind torques.

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