论文标题
主动区域的合成太阳能周期违反了黑尔的极性法
Synthetic solar cycle for active regions violating the Hale's polarity law
论文作者
论文摘要
双极活动区域(ARS)的长观测系列提供了有关全局太阳磁场的多型和环形组件相互转化的重要信息。环形场的方向决定了根据Hale的极性定律,ARS中主要黑子的极性。绝大多数双极ARS遵守这种规律性,而几个ARS具有相反的极性感(抗头部ARS)。但是,这些ARS的研究受到其统计数据差的阻碍。这里合并了五个11年周期(16-18和23,24)的数据,以编译独特的时间长度和纬度宽度的合成周期。合成循环包含14838 AR的数据,其中367个是抗新的ARS。证明了一个特定的编译合成周期的例程。我们发现,通常,反式AR遵循太阳周期,并均匀地散布在整个时光图中,这意味着它们与全局发电机机制和环形通量系统的基本联系。它们的数量和百分比增加发生在周期的第二部分,这有利于它们对极地场逆转的贡献。在蝴蝶图边缘以及临近太阳最小值(环形场弱)附近的抗头ARS百分比中的过量可能与湍流对流和磁场波动在出现的通量管上的影响有关。还发现了磁性赤道之间未对准的证据。
Long observational series for bipolar active regions (ARs) provide significant information about the mutual transformation of the poloidal and toroidal components of the global solar magnetic field. The direction of the toroidal field determines the polarity of leading sunspots in ARs in accordance with the Hale's polarity law. The vast majority of bipolar ARs obey this regularity, whereas a few percent of ARs have the opposite sense of polarity (anti-Hale ARs). However, the study of these ARs is hampered by their poor statistics. The data for five 11-year cycles (16-18 and 23,24) were combined here to compile a synthetic cycle of unique time length and latitudinal width. The synthetic cycle comprises data for 14838 ARs and 367 of them are the anti-Hale ARs. A specific routine to compile the synthetic cycle was demonstrated. We found that, in general, anti-Hale ARs follow the solar cycle and are spread throughout the time-latitude diagram evenly, which implies their fundamental connection with the global dynamo mechanism and the toroidal flux system. The increase in their number and percentage occurs in the second part of the cycle, which is in favour of their contribution to the polar field reversal. The excess in the anti-Hale ARs percentage at the edges of the butterfly diagram and near an oncoming solar minimum (where the toroidal field weakens) might be associated with strengthening of the influence of turbulent convection and magnetic field fluctuations on the arising flux tubes. The evidence of the misalignment between the magnetic and heliographic equators is also found.