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A generalized flux function for three-dimensional magnetic reconnection.

机译:三维磁重连接的广义磁通函数。

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摘要

The definition and measurement of magnetic reconnection in three-dimensional magnetic fields with multiple reconnection sites is a challenging problem, particularly in fields lacking null points. We propose a generalization of the familiar two-dimensional concept of a magnetic flux function to the case of a three-dimensional field connecting two planar boundaries. In this initial analysis, we require the normal magnetic field to have the same distribution on both boundaries. Using hyperbolic fixed points of the field line mapping, and their global stable and unstable manifolds, we define a unique flux partition of the magnetic field. This partition is more complicated than the corresponding (well-known) construction in a two-dimensional field, owing to the possibility of heteroclinic points and chaotic magnetic regions. Nevertheless, we show how the partition reconnection rate is readily measured with the generalized flux function. We relate our partition reconnection rate to the common definition of three-dimensional reconnection in terms of integrated parallel electric field. An analytical example demonstrates the theory and shows how the flux partition responds to an isolated reconnection event.
机译:在具有多个重连位置的三维磁场中磁重连接的定义和测量是一个具有挑战性的问题,尤其是在缺少零点的磁场中。我们提议将磁通函数的二维概念推广到连接两个平面边界的三维场的情况。在此初始分析中,我们要求法向磁场在两个边界上具有相同的分布。使用场线映射的双曲不动点及其全局稳定和不稳定歧管,我们定义了磁场的唯一磁通分配。由于存在异斜点和混沌磁区,这种划分比二维场中相应的(众所周知的)结构更为复杂。然而,我们展示了如何使用广义通量函数轻松测量分区重新连接率。我们根据整体并联电场将分区重新连接速率与三维重新连接的通用定义联系起来。一个分析示例演示了该理论,并显示了磁通分配如何响应隔离的重新连接事件。

著录项

  • 作者

    Yeates A.R.; Hornig G.;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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