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Coronal Magnetic Topologies in a Spherical Geometry I. Two Bipolar Flux Sources

机译:球形几何中的日冕磁拓扑I.两个双极通量源

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摘要

The evolution of the solar corona is dominated to a large extent by the hugely complicated magnetic field which threads it. Magnetic topology provides a tool to decipher the structure of this field and thus help to understand its behaviour. Usually, the magnetic topology of a potential field is calculated due to flux sources on a locally planar photospheric surface. We use a Green's function method to extend this theory to sources on a global spherical surface. The case of two bipolar flux-balanced source regions is studied in detail, with an emphasis on how the distribution and relative strengths of the source regions affect the resulting topological states. A new state with two spatially distinct separators connecting the same two magnetic null points, called the “dual intersecting“ state, is discovered.
机译:太阳电晕的演变在很大程度上受到将其穿线的极其复杂的磁场的控制。磁拓扑提供了一种工具来解密该磁场的结构,从而有助于了解其行为。通常,势场的磁拓扑是由于局部平面的光球表面上的磁通源而计算的。我们使用格林函数方法将该理论扩展到整体球形表面上的源。详细研究了两个双极通量平衡的源区的情况,重点是源区的分布和相对强度如何影响最终的拓扑状态。发现了一个新状态,该状态具有两个空间上不同的分隔符,这些分隔符将相同的两个磁性零点连接在一起,称为“双相交”状态。

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  • 来源
    《Solar Physics》 |2006年第2期|259-280|共22页
  • 作者单位

    Institute of Mathematics University of St. Andrews;

    Institute of Mathematics University of St. Andrews;

    Institute of Mathematics University of St. Andrews;

    Department of Physics Montana State University;

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  • 正文语种 eng
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