太阳磁图的持久同源性分析

Pablo Santamarina Guerrero, Yukio Katsukawa, Shin Toriumi, D. O. Su'arez
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引用次数: 0

摘要

了解太阳磁场对于揭示太阳活动的内在驱动机制至关重要。将拓扑数据分析技术整合到这些研究中,可以为了解磁场的复杂结构提供有价值的见解,增强我们对太阳活动及其影响的理解。在这项研究中,我们探讨了持久同源性在太阳磁图分析中的作用,目的是引入一种新工具,作为进一步研究太阳表面磁结构的基础。通过结合持久同源性分析的各种过滤方法,我们对太阳磁图进行了分析,捕捉到了涉及正负极性混合的广阔磁场。这种分析方法适用于分别由小日/太阳光学望远镜和 SDO/高地震和磁成像仪拍摄的太阳静区和活动区的观测数据。我们的主要重点是分析通过这些技术确定的磁场空间结构和特征的特性。结果表明,持久图可以通过识别孤立的、连接的和相互作用的特征,对活跃区域磁通的空间结构复杂性进行编码。它们有助于根据活跃区域的形态对其进行分类,并对极性相反的相互作用结构(如δ斑)进行探测和量化。静止太阳中的小尺度事件,如磁通量抵消和出现,也会在持久图中显示出来,可以通过观察图的演变和跟踪相关特征进行研究。
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Persistent Homology Analysis for Solar Magnetograms
Understanding the magnetic fields of the Sun is essential for unraveling the underlying mechanisms driving solar activity. Integrating topological data analysis techniques into these investigations can provide valuable insights into the intricate structures of magnetic fields, enhancing our comprehension of solar activity and its implications. In this study, we explore what persistent homology can offer in the analysis of solar magnetograms, with the objective of introducing a novel tool that will serve as the foundation for further studies of magnetic structures at the solar surface. By combining various filtration methods of the persistent homology analysis, we conduct an analysis of solar magnetograms that captures the broad magnetic scene, involving a mixture of positive and negative polarities. This analysis is applied to observations of both quiet-Sun and active regions, taken with the Hinode/Solar Optical Telescope and SDO/Helioseismic and Magnetic Imager, respectively. Our primary focus is on analyzing the properties of the spatial structures and features of the magnetic fields identified through these techniques. The results show that persistent diagrams can encode the spatial structural complexity of the magnetic flux of active regions by identifying the isolated, connected, and interacting features. They facilitate the classification of active regions based on their morphology and the detection and quantification of interacting structures of opposing polarities, such as δ spots. The small-scale events in the quiet Sun, such as magnetic flux cancellation and emergence, are also revealed in persistent diagrams and can be studied by observing the evolution of the plots and tracking the relevant features.
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