论文标题

活性复合物和太阳周期期间的突出极端浪涌24

Activity Complexes and A Prominent Poleward Surge During Solar Cycle 24

论文作者

Wang, Zi-Fan, Jiang, Jie, Zhang, Jie, Wang, Jing-Xiu

论文摘要

持久的活性复合物(ACS)被认为是一系列紧密地位于位置,连续出现的太阳活动区域(ARS),被认为是从观测值中产生突出的极点潮流。这些潮流导致极性场的显着变化,这对于调节太阳周期很重要。我们旨在研究南半球在太阳周期24期间的突出极力激增,并分析其起源ACS以及对极地场演化的影响。我们会自动识别和表征基于太阳动力学观测站的概要磁图的ARS。我们将这些AR用逼真的磁性构型吸收到表面通量传输模型中,并模拟激发的创造和迁移。我们的模拟很好地重现了激增的特征,并表明著名的激增主要是由于在卡灵顿旋转期间属于两个ACS的AR引起的,2145-2159(2013年12月至2015年1月)。在周期24的后半段,浪涌对南半球的极性场演变有很大的影响。如果没有ACS的形式大约一年的通量出现,周围最小周围的极性场将保持在较低水平,甚至在循环23最低循环时甚至逆转到极性。我们的研究还表明,由于早期新兴AR的衰减而引起的长寿命单极区域会导致自动识别和精确量化AC中的新兴ARS的内在困难。

Long-lasting activity complexes (ACs), characterised as a series of closely located, continuously emerging solar active regions (ARs), are considered generating prominent poleward surges from observations. The surges lead to significant variations of the polar field, which are important for the modulation of solar cycles. We aim to study a prominent poleward surge during solar cycle 24 on the southern hemisphere, and analyse its originating ACs and the effect on the polar field evolution. We automatically identify and characterize ARs based on synoptic magnetograms from the Solar Dynamic Observatory. We assimilate these ARs with realistic magnetic configuration into a surface flux transport model, and simulate the creation and migration of the surge. Our simulations well reproduce the characteristics of the surge and show that the prominent surge is mainly caused by the ARs belonging to two ACs during Carrington Rotations 2145-2159 (December 2013-January 2015). The surge has a strong influence on the polar field evolution of the southern hemisphere during the latter half of cycle 24. Without the about one-year-long flux emergence in the form of ACs, the polar field around the cycle minimum would have remained at a low level and even reversed to the polarity at cycle 23 minimum. Our study also shows that the long-lived unipolar regions due to the decay of the earlier emerging ARs cause an intrinsic difficulty of automatically identifying and precisely quantifying later emerging ARs in ACs.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源