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首页> 外文期刊>Solar Physics >Twisted Flux Tube Emergence Evidenced in Longitudinal Magnetograms: Magnetic Tongues
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Twisted Flux Tube Emergence Evidenced in Longitudinal Magnetograms: Magnetic Tongues

机译:纵向磁场图显示的扭曲通量管出现:磁性舌头

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摘要

Bipolar active regions (ARs) are thought to be formed by twisted flux tubes, as the presence of such twist is theoretically required for a cohesive rise through the whole convective zone. We use longitudinal magnetograms to demonstrate that a clear signature of a global magnetic twist is present, particularly, during the emergence phase when the AR is forming in a much weaker pre-existing magnetic field environment. The twist is characterised by the presence of elongated polarities, called “magnetic tongues”, which originate from the azimuthal magnetic field component. The tongues first extend in size before retracting when the maximum magnetic flux is reached. This implies an apparent rotation of the magnetic bipole. Using a simple half-torus model of an emerging twisted flux tube having a uniform twist profile, we derive how the direction of the polarity inversion line and the elongation of the tongues depend on the global twist in the flux rope. Using a sample of 40 ARs, we verify that the helicity sign, determined from the magnetic polarity distribution pattern, is consistent with the sign derived from the photospheric helicity flux computed from magnetogram time series, as well as from other proxies such as sheared coronal loops, sigmoids, flare ribbons and/or the associated magnetic cloud observed in situ at 1 AU. The evolution of the tongues observed in emerging ARs is also closely similar to the evolution found in recent MHD numerical simulations. We also found that the elongation of the tongue formed by the leading magnetic polarity is significantly larger than that of the following polarity. This newly discovered asymmetry is consistent with an asymmetric Ω-loop emergence, trailing the solar rotation, which was proposed earlier to explain other asymmetries in bipolar ARs.
机译:双极性有源区(ARs)被认为是由扭曲的通量管形成的,因为从理论上讲,这种扭曲的存在是整个对流区域内聚性上升的必要条件。我们使用纵向磁图来证明存在明显的整体磁扭曲特征,尤其是在AR处于较弱的现有磁场环境中形成的出现阶段。扭曲的特征在于存在细长的极性,称为“磁舌”,其起源于方位磁场分量。当达到最大磁通量时,舌片先在尺寸上延伸,然后缩回。这暗示了磁双极的明显旋转。使用具有均匀扭曲轮廓的新兴扭曲通量管的简单半torus模型,我们得出极性反转线的方向和舌头的伸长如何取决于通量绳中的整体扭曲。使用40个AR的样本,我们验证了根据磁极性分布模式确定的螺旋度符号与从磁图时间序列以及其他代理(例如剪切冠状环)计算出的光球螺旋通量得出的符号一致,乙状结肠,火炬带和/或相关的磁云在1 AU现场观察到。在新兴的增强现实中观察到的舌头进化也与最近的MHD数值模拟中发现的进化极为相似。我们还发现,由超前的磁极性形成的舌头的伸长率明显大于其后的极性。这种新发现的不对称现象与太阳旋转有关,是不对称的Ω环出现的结果,后者早先被提出来解释双极AR中的其他不对称现象。

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