论文标题

太阳能防突动双极磁区域:具有系统特性的不同种群

Solar Anti-Hale Bipolar Magnetic Regions: A Distinct Population with Systematic Properties

论文作者

Munoz-Jaramillo, A., Navarrete, B., Campusano, L. E.

论文摘要

除了与长期和短期磁性变化的因果关系外,太阳双极磁区域是我们对太阳内部大型环形磁结构的位置,大小和特性的洞察力的主要来源。这些区域中的绝大多数(〜95%)遵循系统的东西向极性取向(Hale's Law),该方向在对面的半球以及偶数和奇数周期中逆转。这些地区还提出了系统的南北极性取向(Joy's Ward),该区域有助于建立新循环的多环领域。黑尔定律的例外很少见,并且由于数量较少而难以研究。在这里,我们对倾斜度(TILT)进行了统计分析(倾斜),相对于跨越四个太阳循环的黑尔与反对区域的赤道,考虑到先前研究中采用的两个互补倾斜定义。我们的结果表明,反式区域属于单独的人群,而不是黑尔地区,这表明有不同的原始机制。但是,我们发现抗头部区域倾斜具有与Hale区域相似的系统倾斜特性和相似的纬度分布,这意味着两者之间存在牢固的联系。我们认为这是它们属于常见的环形通量系统的证据。我们推测,抗头部区域源自在具有非常强大的poloidal贡献的Hale区域出现后,在现场剪切和增强的poloidal区域。因此,它们与太阳内部内部内部很大程度相干的环形系统的想法并不矛盾。

Besides their causal connection with long and short-term magnetic variability, solar bipolar magnetic regions are our chief source of insight into the location, size, and properties of large-scale toroidal magnetic structures in the solar interior. The great majority of these regions (~95%) follow a systematic east-west polarity orientation (Hale's law) that reverses in opposite hemispheres and across even and odd cycles. These regions also present a systematic north-south polarity orientation (Joy's law) that helps build the poloidal field that seeds the new cycle. Exceptions to Hale's law are rare and difficult to study due to their low numbers. Here, we present a statistical analysis of the inclination (tilt) with respect to the equator of Hale versus anti-Hale regions spanning four solar cycles, considering two complementary tilt definitions adopted in previous studies. Our results show that anti-Hale regions belong to a separate population than Hale regions, suggesting a different originating mechanism. However, we find that anti-Hale region tilts present similar systematic tilt properties and similar latitudinal distributions to Hale regions, implying a strong connection between the two. We see this as evidence that they belong to a common toroidal flux system. We speculate that anti-Hale regions originate from poloidal field sheared and strengthened on the spot after the emergence of Hale regions with very strong poloidal contribution. Thus, they are not in contradiction with the idea of largely coherent toroidal flux systems inside the solar interior.

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