论文标题

使用Proba2数据对太阳能电晕的长期演变

Long-term Evolution of the Solar Corona Using PROBA2 Data

论文作者

Mierla, Marilena, Janssens, Jan, D'Huys, Elke, Wauters, Laurence, West, Matthew J., Seaton, Daniel B., Berghmans, David, Podladchikova, Elena

论文摘要

我们使用带有主动像素系统检测器的太阳观察者和图像处理(交换)成像器在板上进行机上自治2(Proba2)任务来研究整个太阳能周期24(从2010年至2019年)观察到的太阳能电晕中大型EUV结构的演变。我们根据EUV强度的变化讨论了磁盘冠状特征的演变以及在太阳表面上方的不同高度的演变。我们还查看了赤道和极性区域中电晕的演变,并在太阳周期的不同阶段以及黑子数量的演化以及Proba2/Lyman-Alpha辐射计(Lyra)信号进行比较。主要结果如下:三个时间序列(交换盘平均亮度,黑子数量和Lyra辐照度)非常相关,相关系数约为0.9。在整个期间,纬度为+15、0和-15度的平均旋转速率约为15度/天。在SC24的下降阶段观察到了圆极处EUV平均强度的次级峰。这些峰(分别在北极和南极)似乎与(极)冠状孔的发展开始有关。从2010年3月左右到2016年3月左右可见大规模的外部结构,这意味着它们在太阳能活动的最小阶段不存在。北极的球迷持续了11多次卡灵顿轮换(2014年2月至2015年3月),可以看到高度为1.6卢比。

We use The Sun Watcher with Active Pixel System detector and Image Processing (SWAP) imager onboard the Project for Onboard Autonomy 2 (PROBA2) mission to study the evolution of large-scale EUV structures in the solar corona observed throughout Solar Cycle 24 (from 2010 to 2019). We discuss the evolution of the on-disk coronal features and at different heights above the solar surface based on EUV intensity changes. We also look at the evolution of the corona in equatorial and polar regions and compare them at different phases of the solar cycle, as well as with sunspot number evolution and with the PROBA2/Lyman-Alpha Radiometer (LYRA) signal. The main results are as follows: The three time series (SWAP on-disk average brightness, sunspot number and LYRA irradiance) are very well correlated, with correlation coefficients around 0.9. The average rotation rate of bright features at latitudes of +15, 0, and -15 degrees was around 15 degree/day throughout the period studied. A secondary peak in EUV averaged intensity at the Poles was observed on the descending phase of SC24. These peaks (at North and South poles respectively) seem to be associated with the start of the development of the (polar) coronal holes. Large-scale off-limb structures were visible from around March 2010 to around March 2016, meaning that they were absent at the minimum phase of solar activity. A fan at the North pole persisted for more than 11 Carrington rotations (February 2014 to March 2015), and it could be seen up to altitudes of 1.6 Rs.

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