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首页> 外文期刊>The Astrophysical journal >ON POLAR MAGNETIC FIELD REVERSAL AND SURFACE FLUX TRANSPORT DURING SOLAR CYCLE 24
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ON POLAR MAGNETIC FIELD REVERSAL AND SURFACE FLUX TRANSPORT DURING SOLAR CYCLE 24

机译:周期中极性磁场的逆向和表面通量传输研究24

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As each solar cycle progresses, remnant magnetic flux from active regions (ARs) migrates poleward to cancel the old-cycle polar field. We describe this polarity reversal process during Cycle 24 using four years (2010.33-2014.33) of line-of-sight magnetic field measurements from the Helioseismic and Magnetic Imager. The total flux associated with ARs reached maximum in the north in 2011, more than two years earlier than the south; the maximum is significantly weaker than Cycle 23. The process of polar field reversal is relatively slow, north-south asymmetric, and episodic. We estimate that the global axial dipole changed sign in 2013 October; the northern and southern polar fields (mean above 60° latitude) reversed in 2012 November and 2014 March, respectively, about 16 months apart. Notably, the poleward surges of flux in each hemisphere alternated in polarity, giving rise to multiple reversals in the north. We show that the surges of the trailing sunspot polarity tend to correspond to normal mean AR tilt, higher total AR flux, or slower mid-latitude near-surface meridional flow, while exceptions occur during low magnetic activity. In particular, the AR flux and the mid-latitude poleward flow speed exhibit a clear anti-correlation. We discuss how these features can be explained in a surface flux transport process that includes a field-dependent converging flow toward the ARs, a characteristic that may contribute to solar cycle variability.
机译:随着每个太阳周期的进行,来自活动区域(AR)的剩余磁通向极点迁移,从而抵消了旧周期的极化场。我们使用Helioseismic and Magnetic Imager的四年(2010.33-2014.33)视线磁场测量值描述了周期24中的这种极性反转过程。 2011年,北部地区与AR相关的总通量达到最大值,比南部地区早了两年多;最大值明显比第23周期弱。极性反转的过程相对较慢,南北不对称且是偶发的。我们估计全球轴向偶极子在2013年10月发生了变化。北极和南部极地(平均纬度60度以上)分别在2012年11月和2014年3月逆转,相距约16个月。值得注意的是,每个半球的极向通量波动在极性上交替出现,从而在北部引起多次逆转。我们显示,尾随太阳黑子极性的波动倾向于对应于正常的平均AR倾斜度,较高的总AR通量或较慢的中纬度近地表子午流,而在低磁活动期间会发生例外。特别是,AR通量和中纬度极向流速表现出明显的反相关性。我们讨论了如何在表面通量传输过程中解释这些特征,包括通向ARs的依赖于场的会聚流,该特征可能会导致太阳周期变化。

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