论文标题
1986 - 2020年期间,来自软X射线的新的太阳火光事件目录发出信号
A new catalogue of solar flare events from soft x-ray GOES signal in the period 1986-2020
论文作者
论文摘要
太阳火焰以及其他阳光充满活力的事件,例如冠状质量弹出,快速太阳风流和太阳能颗粒是太空天气中最相关的事件之一。此外,太阳耀斑是我们太阳系中发生的最有活力的过程。对其发生统计的深入研究,无论是在长时间还是在单个太阳周期内,都使我们能够改善和限制其起源的基本物理模型。因此,增加检测到的事件的数量,尤其是强度较低的事件,以及描述检测到的耀斑的物理参数的数量是强制性目标。在本文中,我们提出了一种计算有效的算法,用于检测由GOOS(NASA/NOAA)卫星星座提供的软X太阳通量中的太阳燃料。我们的代码生成了一个新的耀斑目录,以增加相对于官方GON列表的事件数量。除了增加确定的事件的数量外,目录还包含诸如:估计事件的总能量,开始和结束时间的估计,可能与其他事件重叠,ROG X射线发射的背景级别接近揭示的事件。在对检测算法进行了详细描述之后,我们对目录中报告的耀斑进行了初步分析,并将结果与1998年至2020年期间的正式列表进行了比较。
Solar flares, along with other sun-originated events such as Coronal Mass Ejections, fast solar wind streams, and solar energetic particles are among the most relevant events in Space Weather. Moreover, solar flares are the most energetic processes that occur in our solar system. The in-depth study of their occurrence statistics, both over extended periods or during individual solar cycles, allows us to improve and constrain the basic physical models of their origin. Increasing the number of detected events, especially those of lower intensity, and the number of physical parameters that describe the detected flares is, therefore, a mandatory goal. In this paper, we present a computationally efficient algorithm for the detection of solar flares in the soft-X solar flux provided by the GOES (NASA/NOAA) satellite constellation. Our code produces a new flare catalogue increasing the number of events with respect to the official GOES list. In addition to increasing the number of identified events, the catalogue contains information such as: an estimate of the total energy released, start and end time of the event, possible overlap with other events, background level of the GOES X-ray emission close to the revealed event. After a detailed description of the detection algorithm, we carry out a preliminary analysis of the flares reported in our catalogue and compare our results with the official list of GOES for the period from 1998 to 2020.