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Topological changes of the photospheric magnetic field inside active regions: A prelude to flares?

机译:有源区内光球磁场的拓扑变化:耀斑的前奏?

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The detection of magnetic field variations as a signature of flaring activity is one of the main goals in solar physics. Past efforts gave apparently no unambiguous observations of systematic changes. In the present study, we discuss recent results from observations that scaling laws of turbulent current helicity inside a given flaring active region change in response to large flares in that active region. Such changes can be related to the evolution of current structures by a simple geometrical argument, which has been tested using high Reynolds number direct numerical simulations of the MHD equations. Interpretation of the observed data within this picture indicates that the change in scaling behavior of the current helicity seems to be associated with a topological reorganization of the footpoint of the magnetic field loops, namely with the dissipation of small scales structures in turbulent media.
机译:探测磁场变化作为燃烧活动的标志是太阳物理学的主要目标之一。过去的努力显然没有对系统变化做出明确的观察。在本研究中,我们讨论了以下观察所得的最新结果:给定扩口活动区域内湍流螺旋度的缩放定律响应于该活动区域中的大爆发而改变。这种变化可以通过简单的几何参数与当前结构的演变相关,该几何参数已使用MHD方程的高雷诺数直接数值模拟进行了测试。对这张图中观察到的数据的解释表明,当前螺旋度的缩放行为的变化似乎与磁场环的脚点的拓扑重组有关,即与湍流介质中小尺度结构的耗散有关。

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