论文标题
不同磁形体类别的太阳活动区域的磁通量:I。环状变化
Magnetic fluxes of solar active regions of different magneto-morphological classes: I. Cyclic variations
论文作者
论文摘要
自1996年5月12日至2021年12月27日以来观察到的3046个太阳活动区域(ARS)的数据被用来探索如何遵循不同复杂性的AR磁通量遵循太阳周期。利用了太阳能观测站上的米歇尔森多普勒成像器仪器以及太阳能动力学天文台上的Helioseissic和磁成像器仪器的磁力图。每个AR被分类为常规双极AR(A1或A2类),或不规则的双极AR(B1类)或多极AR(B2或B3类)。单极AR被隔离为特定类别的U。我们发现了以下结果。循环之后,来自不同类别的ARS的未签名磁通量同步演变,通量曲线之间的相关系数在(0.70-0.99)范围内变化。对于所有类别,同时观察到最深的太阳最小值。在最低限度的最低限度中,只观察到最简单的AR:A1和B1级ARS。一个循环的总体形状由常规AR控制,而太阳能最大值的精细结构取决于最复杂的不规则AR。在太阳能最大值期间,A级和B级ARS贡献了大约相等数量的通量(45 $ - $ 50%)。因此,观察结果使我们得出结论,磁通量高于10 $^{21} $ MX的ARS的出现是由太阳能发电机引起的,该太阳能发电机作为一个独特的过程,显示出具有环状行为和不可避免的波动的非线性动力学系统的性质。
Data for 3046 solar active regions (ARs) observed since May 12, 1996 to December 27, 2021 were utilized to explore how the magnetic fluxes from ARs of different complexity follow the solar cycle. Magnetograms from the Michelson Doppler Imager instrument on the Solar and Heliospheric Observatory and from the Helioseismic and Magnetic Imager instrument on the Solar Dynamics Observatory were utilized. Each AR was classified as a regular bipolar AR (classes A1 or A2), or as an irregular bipolar AR (class B1), or as a multipolar AR (classes B2 or B3). Unipolar ARs were segregated into a specific class U. We found the following results. Unsigned magnetic fluxes from ARs of different classes evolve synchronously following the cycle, the correlation coefficient between the flux curves varies in a range of (0.70 - 0.99). The deepest solar minimum is observed simultaneously for all classes. Only the most simple ARs were observed during a deepest minimum: A1- and B1-class ARs. The overall shape of a cycle is governed by the regular ARs, whereas the fine structure of a solar maximum is determined by the most complex irregular ARs. Approximately equal amount of flux (45$-$50% of the total flux) is contributed by the A-class and B-class ARs during a solar maximum. Thus, observations allow us to conclude that the appearance of ARs with the magnetic flux above 10$^{21}$ Mx is caused by the solar dynamo that operates as a unique process displaying the properties of a non-linear dynamical dissipative system with a cyclic behaviour and unavoidable fluctuations.