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首页> 外文期刊>Journal of astrophysics and astronomy >Inductive Magnetic Footpoint Tracking by Combining the Minimum Energy Fit with the Local Correlation Tracking and Doppler Velocity
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Inductive Magnetic Footpoint Tracking by Combining the Minimum Energy Fit with the Local Correlation Tracking and Doppler Velocity

机译:通过将最小能量拟合与局部相关性跟踪和多普勒速度相结合来实现感应磁脚点跟踪

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Time-dependent magneto-hydrodynamic simulations of active region coronal magnetic field require the underlying photospheric magnetic footpoint velocities. The minimum energy fit (MEF) is a new velocity inversion technique to infer the photospheric magnetic footpoint velocities using a pair of vector magnetograms, introduced by Longcope (2004). The MEF selects the smallest overall flow from several consistent flows by minimizing an energy functional. The inferred horizontal and vertical flow fields by the MEF can be further constrained by incorporating the partial or imperfect velocity information obtained through independent means. This hybrid method is expected to give a velocity close to the true magnetic footpoint velocity. Here, we demonstrate that a combination of the MEF, the local correlation tracking (LCT) and Doppler velocity is capable of inferring the velocity close to the photospheric flow.
机译:有源区域日冕磁场的时变磁流体动力学模拟需要基本的光层磁性脚点速度。最小能量拟合(MEF)是一种新的速度反演技术,可使用Longcope(2004)引入的一对矢量磁图来推断光球的磁性脚点速度。通过最小化能量功能,MEF从几个一致的流量中选择最小的总流量。通过合并通过独立方式获得的部分或不完善的速度信息,可以进一步限制由MEF推断出的水平和垂直流场。预期该混合方法将产生接近真实磁脚点速度的速度。在这里,我们证明了MEF,局部相关跟踪(LCT)和多普勒速度的组合能够推断出接近光球流动的速度。

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