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A Rapid, Manual Method to Map Coronal-Loop Structures of an Active Region Using Cubic Bézier Curves and Its Applications to Misalignment Angle Analysis

机译:利用三次贝塞尔曲线绘制活动区域冠状环状结构的快速,手动方法及其在偏心角分析中的应用

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摘要

A rapid and flexible manual method is described that maps individual coronal loops of a 2D EUV image as Bézier curves using only four points per loop. Using the coronal loops as surrogates of magnetic-field lines, the mapping results restrict the magnetic-field models derived from extrapolations of magnetograms to those admissible and inadmissible via a fitness parameter.We outline explicitly how the coronal loops can be employed in constraining competing magnetic-field models by transforming 2D coronal-loop images into 3D field lines. The magnetic-field extrapolations must satisfy not only the lower boundary conditions of the vector field (the vector magnetogram) but also must have a set of field lines that satisfies the mapped coronal loops in the volume, analogous to an upper boundary condition. This method uses the minimization of the misalignment angles between the magnetic-field model and the best set of 3D field lines that match a set of closed coronal loops. The presented method is an important tool in determining the fitness of magneticfield models for the solar atmosphere. The magnetic-field structure is crucial in determining the overall dynamics of the solar atmosphere.
机译:描述了一种快速而灵活的手动方法,该方法将2D EUV图像的各个冠状回路映射为Bézier曲线,每个回路仅使用四个点。使用冠状环作为磁场线的替代物,映射结果将通过适应性参数将磁图的外推法导出的磁场模型限制为可允许和不可允许的模型。场模型,将2D冠状环图像转换为3D场线。磁场外推法不仅必须满足矢量场的下边界条件(矢量磁图),而且还必须具有一组类似于上边界条件的场线,这些场线满足体积中映射的冠状环。此方法使用最小化磁场模型与匹配一组闭合冠状环的最佳3D场线之间的未对准角度。所提出的方法是确定磁场模型对太阳大气的适应性的重要工具。磁场结构对于确定太阳大气的整体动力学至关重要。

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