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The Evolution of the Net Twist Current and the Net Shear Current in Active Region NOAA 10930

机译:有源区NOAA 10930的净扭曲电流和净剪切电流的演变

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摘要

The electric current exists because of the non-potential magnetic field in solar active regions. We present the evolution of net current in the solar active region NOAA 10930 as the sum of shear current and twist current by using 27 high-resolution vector magnetograms obtained with Hinode/SOT-SP during 9 - 15 December 2006. This active region was highly eruptive and produced a large number of flares ranging from B to X class. We derived local distribution of shear and twist current densities in this active region and studied the evolution of net shear current (NSC) and net twist current (NTC) in the N-polarity and S-polarity regions separately. We found the following: i) The twist current density was dominant in the umbrae. ii) The footpoint of the emerging flux rope showed a dominant twist current. iii) The shear current density and twist current density appeared in alternate bands around the umbrae. iv) On the scale of the active region, NTC was always larger than NSC. v) Both NTC and NSC decreased after the onset of an X3.4 class flare that occurred on 13 December 2006.
机译:由于太阳活动区域中的非势磁场而存在电流。通过使用Hinode / SOT-SP在2006年12月9日至15日获得的27幅高分辨率矢量磁图,我们展示了太阳活动区NOAA 10930中净电流的变化,该电流是剪切电流和扭曲电流的总和。爆发并产生大量从B级到X级的耀斑。我们推导了该活动区域中剪切和扭曲电流密度的局部分布,并分别研究了N极性和S极性区域的净剪切电流(NSC)和净扭曲电流(NTC)的演变。我们发现以下情况:i)扭转电流密度在本影中占主导地位。 ii)出现的助焊剂绳的脚点显示出主要的扭曲电流。 iii)剪切电流密度和扭转电流密度出现在本影周围的交替带中。 iv)在活动区域​​的范围内,NTC始终大于NSC。 v)在2006年12月13日发生X3.4级耀斑后,NTC和NSC均下降。

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