Brooks David H, Baker Deborah, van Driel-Gesztelyi Lidia, Warren Harry P
College of Science, George Mason University, 4400 University Drive, Fairfax, VA, 22030, USA.
Hinode Team, ISAS/JAXA, 3-1-1 Yoshinodai, Chuo-ku, Sagamihara, Kanagawa, 252-5210, Japan.
Nat Commun. 2017 Aug 3;8(1):183. doi: 10.1038/s41467-017-00328-7.
The elemental composition in the coronae of low-activity solar-like stars appears to be related to fundamental stellar properties such as rotation, surface gravity, and spectral type. Here we use full-Sun observations from the Solar Dynamics Observatory, to show that when the Sun is observed as a star, the variation of coronal composition is highly correlated with a proxy for solar activity, the F10.7 cm radio flux, and therefore with the solar cycle phase. Similar cyclic variations should therefore be detectable spectroscopically in X-ray observations of solar analogs. The plasma composition in full-disk observations of the Sun is related to the evolution of coronal magnetic field activity. Our observations therefore introduce an uncertainty into the nature of any relationship between coronal composition and fixed stellar properties. The results highlight the importance of systematic full-cycle observations for understanding the elemental composition of solar-like stellar coronae.The Sun's elemental composition is a vital part of understanding the processes that transport energy from the interior to the outer atmosphere. Here, the authors show that if the Sun is observed as a star, then the variation of coronal composition is highly correlated with the F10.7cm radio flux.
低活动水平类太阳恒星日冕中的元素组成似乎与诸如自转、表面重力和光谱类型等基本恒星属性有关。在此,我们利用太阳动力学天文台的全日面观测数据,来表明当把太阳当作一颗恒星进行观测时,日冕组成的变化与太阳活动的一个代理指标——10.7厘米射电流量高度相关,因而也与太阳活动周期阶段相关。因此,在对类日恒星的X射线观测中,通过光谱学方法应该能够探测到类似的周期性变化。对太阳的全日面观测中的等离子体组成与日冕磁场活动的演化有关。因此,我们的观测给日冕组成与固定恒星属性之间任何关系的本质引入了一个不确定性。这些结果凸显了进行系统的全周期观测对于理解类太阳恒星日冕元素组成的重要性。太阳的元素组成是理解从内部向外部大气传输能量过程的关键部分。在此,作者们表明,如果把太阳当作一颗恒星进行观测,那么日冕组成的变化与10.7厘米射电流量高度相关。