首页> 外文期刊>The Astrophysical journal >CORONAL MASS EJECTION: INITIATION, MAGNETIC HELICITY, AND FLUX ROPES. II. TURBULENT DIFFUSION DRIVEN EVOLUTION
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CORONAL MASS EJECTION: INITIATION, MAGNETIC HELICITY, AND FLUX ROPES. II. TURBULENT DIFFUSION DRIVEN EVOLUTION

机译:冠状大肠切除术:启动,磁螺旋度和通量。二。湍流扩散驱动的演化

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摘要

We consider a three-dimensional bipolar magnetic field B, occupying a half-space, which is driven into evolution by the slow turbulent diffusion of its normal component on the boundary. The latter is imposed by fixing the tangential component of the electric field and leads to flux cancellation. We first present general analytical considerations on this problem and then construct a class of explicit solutions in which B keeps evolving quasi-statically through a sequence of force-free configurations without exhibiting any catastrophic behavior. Thus, we report the results of a series of numerical simulations in which B evolves from different force-free states, the electric field on the boundary being imposed to have a vanishing electrostatic part (the latter condition is not enforced in the analytical model, and thus it is possible a priori for the results of the two types of calculations to be different). In all the cases, we find that the evolution conserves the magnetic helicity and exhibits two qualitatively different phases. The first one, during which a twisted flux rope is created, is slow and almost quasi-static, while the second one is associated with a disruption, which is confined for a small initial helicity and global for a large initial helicity. Our calculations may be relevant for modeling the coronal mass ejections that have been observed to occur in the late dispersion phase of an active region. In particular, they may allow us to understand the role played by a twisted flux rope in these events.
机译:我们考虑一个占据半空间的三维双极磁场B,该磁场由其法向分量在边界上的缓慢湍流扩散驱动而演化。后者是通过固定电场的切向分量而施加的,并导致通量抵消。我们首先提出关于此问题的一般分析考虑,然后构造一类显式解决方案,其中B通过一系列无力配置连续保持准静态演化,而没有表现出任何灾难性行为。因此,我们报告了一系列数值模拟的结果,其中B从不同的无力状态演化而来,边界上的电场被施加为具有消失的静电部分(在分析模型中未施加后者的条件,并且因此,两种计算类型的结果可能有先验差异)。在所有情况下,我们都发现该演化过程保留了磁性螺旋,并表现出两个质量上不同的相位。第一个在其间产生扭曲的通量绳,速度缓慢且几乎是准静态的,而第二个与中断相关,该中断仅限于较小的初始螺旋度,而全局则限于较大的初始螺旋度。我们的计算可能与建模在活动区域​​的后期分散阶段发生的日冕物质抛射有关。特别是,它们可以使我们了解在这些事件中扭绞的通量绳所起的作用。

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