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Current-Sheet Buildup and Magnetic Reconnection in Weakly Ionized Solar Lower Atmosphere

机译:弱电离太阳下层大气中的电流表累积和磁重联

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摘要

Solar observations show that magnetic reconnection can occur in the Sun's weakly ionized lower atmosphere (magnetic cancellation, Ellerman bombs and type II white-light flares). Unlike what the usual reconnection models have predicted, such a reconnection is accompanied by temperature enhancements which are less than 10%. To overcome this difficulty, we have reexamined the reconnection in a two-fluid model using a 2D numerical simulation. The numerical solutions demonstrate the following results: (1) Under the influence of Lorentz force, ionized gas carries the magnetic field into a diffusion region where part of the field is annihilated, and the current-sheet scaling laws for the weakly ionized plasma are basically the same as in the fully ionized case. (2) Though the neutral gas is not directly affected by the magnetic field due to frictional forces, its motion is almost the same as the ionized gas except in the region near stagnation point where the streamlines of both species differ appreciably. (3) The pressure of neutrals which governs the distribution of total pressure and temperature varies slightly. So the temperature of the whole domain is nearly uniform in space and constant in time. These results support the idea that magnetic cancellation, Ellerman bombs, and type II white-light flares are due to magnetic reconnection in the Sun's lower atmosphere.
机译:太阳观测表明,磁场的重新连接可能发生在太阳的弱电离的低层大气中(磁场抵消,埃勒曼炸弹和II型白光耀斑)。与通常的重新连接模型所预测的不同,这种重新连接伴随着不到10%的温度升高。为了克服这个困难,我们使用二维数值模拟在双流体模型中重新检查了重新连接。数值解证明了以下结果:(1)在洛伦兹力的影响下,电离的气体将磁场带入一个扩散区域,在该扩散区域中部分电场被消灭,弱电离等离子体的电流表缩放定律基本上是与完全电离的情况相同。 (2)尽管中性气体不受摩擦力直接作用于磁场,但其运动几乎与电离气体相同,除了在停滞点附近,两种物质的流线明显不同。 (3)控制总压力和温度分布的中性点压力略有变化。因此,整个域的温度在空间上几乎是均匀的,并且在时间上是恒定的。这些结果支持了这样的想法,即电磁抵消,埃勒曼炸弹和II型白光耀斑是由于太阳低层大气中的磁重新连接造成的。

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  • 来源
    《Solar Physics 》 |2001年第1期| 133-148| 共16页
  • 作者

    H.S. Ji; M.T. Song; X.Q. Li;

  • 作者单位

    Purple Mountain Observatory,Nanjing, 210008, P.R. China and National Astronomical Observatories, Beijing, 100080, P.R. China;

    Purple Mountain Observatory,Nanjing, 210008, P.R. China and National Astronomical Observatories, Beijing, 100080, P.R. China;

    Physics Department, Nanjing Normal University,Nanjing, 210087, P.R. China;

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