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Statistics of stellar variability from Kepler - I. Revisiting Quarter 1 with an astrophysically robust systematics correction

机译:开普勒恒星变异性的统计-一。通过天体稳健的系统校正来回顾第一季度

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We investigate the variability properties of main sequence stars in the first month of Kepler data, using a new astrophysically robust systematics correction. We find that the fraction of stars with variability greater than that of the Sun is 60%, which is marginally consistent with previous studies, and confirm the trend of increasing variability with decreasing effective temperatures. We define low and high variability samples, with a cut corresponding to twice the variability level of the active Sun, and compare the properties of the stars belonging to each sample. We show tentative evidence that the more active stars have lower proper motions and may be located closer to the galactic plane. We also investigate the frequency content of the variability, finding clear evidence for periodic or quasi-periodic behaviour in 16% of stars, and showing that there exist significant differences in the nature of variability between spectral types. Of the periodic objects, most A and F?stars have short periods (5?days, with a trend towards longer periods at later spectral types) and show a mixture of periodic and stochastic variability, indicative of activity. Finally, we use auto-regressive models to characterise the stochastic component of the variability, and show that its typical amplitude and time-scale both increase towards later spectral types, which we interpret as a corresponding increase in the characteristic size and life-time of active regions.
机译:我们使用新的天体物理学鲁棒性系统校正来研究开普勒数据第一个月中主要序列恒星的变异性。我们发现,变异性大于太阳的恒星比例为60%,这与先前的研究在一定程度上是一致的,并确认了随着有效温度降低,变异性增加的趋势。我们定义了低变异性样本和高变异性样本,其切割对应于活动太阳的变异性水平的两倍,并比较了属于每个样本的恒星的属性。我们显示出初步的证据,即活跃度较高的恒星具有较低的固有运动,并且可能位于更靠近银河平面的位置。我们还研究了变异性的频率内容,找到了16%的恒星周期性或准周期性行为的明确证据,并表明光谱类型之间变异性的性质存在显着差异。在周期性天体中,大多数A和F星的周期很短(5天,在以后的光谱类型上有较长周期的趋势),并且显示出周期性和随机变化的混合体,表明活动。最后,我们使用自回归模型来表征变异性的随机成分,并表明其典型幅度和时标都朝着后来的光谱类型增加,我们认为这是特征尺寸和寿命的相应增加。活动区域。

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