论文标题

在2020年大调光事件中,$α$ ori的色球环活性和光球变化

Chromospheric activity and photospheric variation of $α$ Ori during the great dimming event in 2020

论文作者

Mittag, M., Schröder, K. -P., Perdelwitz, V., Jack, D., Schmitt, J. H. M. M.

论文摘要

2019年底和2020年初,Alpha Ori的所谓重大变暗事件激发了我们对此期间色球活动行为的兴趣。为了研究色层活性的时间表,我们得出了Tigre和Mount Wilson值的S_MWO时间序列,并将该长期序列与来自AAVSO数据库的光度数据进行了比较。此外,我们确定了Ca II H&K线的绝对和归一化多余通量。为此,我们估计了Tigre Spectra的有效温度不断变化,并在2019年11月至2020年2月之间发现了约80 K的明显下降,这与最小视觉亮度相吻合。在同一时期,S索引显着增加,但这仅仅是对比度的效果,因为CA II H&K系的归一化量升高没有显着变化。但是,后者在这一集之后立即下降。比较S_MWO的组合值和视觉幅度时间序列,我们发现在1984年和1985年发生的Alpha Ori视觉幅度的另一个明显下降的s索引增加。为了探测上部照片的动态,我们在6251-6263 A中分析了与6251-6263 A的线路的动力学,该线路与距离的距离进行了分析,该线路与一个很好的距离相互作用。这种类型的变化可能是由于上升和下沉的凉爽羽流作为对流Ori的暂时溢出而引起的。基于我们的研究,我们得出结论,大调暗的原因位于Photosphere中。此外,长期的光谱和光度法时间序列表明,这种巨大的变性似乎并不是一个独特的现象,而是这样的粘膜确实更频繁地发生,这激发了对Alpha Ori的进一步监测,并具有Tigre等设施。

The so-called great dimming event of alpha Ori in late 2019 and early 2020 sparked our interest in the behaviour of chromospheric activity during this period. To study the timeline of chromospheric activity, we derive a S_MWO time series of TIGRE and Mount Wilson values, and we compare this long time series with photometric data from the AAVSO database. In addition, we determine the absolute and normalised excess flux of the Ca II H&K lines. To do so, we estimate the changing effective temperature from TIGRE spectra and find a clear drop of about 80 K between November 2019 and February 2020, which coincides with the minimum of visual brightness. During the same period, the S-index increased significantly, yet this is a mere contrast effect, because the normalised excess flux of the Ca II H&K lines did not change significantly. However, the latter dropped immediately after this episode. Comparing the combined S_MWO values and visual magnitude time series, we find a similar increase in the S-index during another noticeable decrease in the visual magnitude of alpha Ori, which took place in 1984 and 1985. To also probe the dynamics of the upper photosphere, we analysed the lines in 6251-6263 A and found core distance varies which shows a relation with the great dimming event. This type of variation could be caused by rising and sinking cool plumes as a temporary spill-over of convection on alpha Ori. Based on our study, we conclude that the cause for the great dimming is located in the photosphere. Furthermore, the long-term spectroscopic and photometric time series suggests that this great dimming does not appear to be a unique phenomenon, but rather that such dimmings do occur more frequently, which motivates further monitoring of alpha Ori with facilities such as TIGRE.

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