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A Fast Current-Field Iteration Method for Calculating Nonlinear Force-Free Fields

机译:计算非线性自由力场的快速电流场迭代方法

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摘要

Existing methods for calculating nonlinear force-free magnetic fields are slow, and are likely to be inadequate for reconstructing coronal magnetic fields based on high-resolution vector magnetic field data from a new generation of spectro-polarimetric instruments. In this paper a new implementation of the current-field iteration method is presented, which is simple, fast, and accurate. The time taken by the method scales as N 4, for a three-dimensional grid with N 3 points. The method solves the field-updating part of the iteration by exploiting a three-dimensional Fast Fourier Transform solution of Ampere’s law with a current density field constructed to satisfy the required boundary conditions, and uses field line tracing to solve the current-updating part of the iteration. The method is demonstrated in application to a known nonlinear force-free field and to a bipolar test case.
机译:现有的用于计算非线性无力磁场的方法很慢,并且可能不足以基于来自新一代光谱极化仪器的高分辨率矢量磁场数据来重建日冕磁场。本文提出了一种简单,快速,准确的电流场迭代方法的新实现方法。对于具有N 3 点的三维网格,该方法花费的时间定为N 4 。该方法通过利用安培定律的三维快速傅立叶变换解决方案来解决迭代的场更新部分,该解决方案具有构造为满足所需边界条件的电流密度场,并使用场线跟踪来解决迭代的场更新。迭代。该方法在已知的非线性无力场和双极性测试案例中得到了证明。

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  • 来源
    《Solar Physics 》 |2006年第1期| 29-39| 共11页
  • 作者

    M. S. Wheatland;

  • 作者单位

    School of Physics University of Sydney;

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  • 正文语种 eng
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