论文标题

编织磁场中MHD波的正向建模

Forward Modelling of MHD Waves in Braided Magnetic Fields

论文作者

Fyfe, Lianne, Howson, Thomas, De Moortel, Ineke

论文摘要

目的。我们研究了从编织磁场传播的横向波的数值模型产生的合成观察信号。方法。我们检查了两个具有不同级别磁场编织水平的模拟,并在下边界施加了周期性的横向驱动器。波浪反射顶部边界后,波浪干扰的复杂模式形成。我们分析了前向建模代码FOMO产生的合成发射。我们检查线强度,多普勒的偏移和动能沿几个视线(LOS)角度。结果。多普勒移位显示出横波的存在。但是,在分析强度时,对于更复杂的磁场而言,观察到波不太容易,并且可能被误认为是背景噪声。根据LOS角度,波浪的可观察到的特征反映了一些磁场编织,尤其是在可用的多个发射线时。在更编组的模拟中,可以识别相混合的签名。我们根据合成发射特征来确定波模式解释中可能的歧义。结论。考虑到3D空间中参数的演变的知识,本文中的大多数可观察结果都如预期的那样行事。但是,存在一些有趣的观察性特征。当存在波时,检测磁场复杂性的区域有些可能。但是,来自不同线条的同时光谱成像对于识别这些位置很重要。当将强度和多普勒速度特征解释为扭转运动时,需要注意小心,因为在我们的设置中,这种特征是磁场复杂性而不是扭转波的结果。最后,用多普勒速度估计的动能取决于波浪的极化,背景场和LOS的复杂性。

Aim. We investigate synthetic observational signatures generated from numerical models of transverse waves propagating in braided magnetic fields. Methods. We examine two simulations with different levels of magnetic field braiding and impose a periodic, transverse wave driver at the lower boundary. After waves reflect off the top boundary, a complex pattern of wave interference forms. We analyse the synthetic emission produced by the forward modelling code, FoMo. We examine line intensity, Doppler shifts and kinetic energy along several line-of-sight (LOS) angles. Results. The Doppler shifts showed the presence of transverse waves. However, when analysing the intensity, waves are less easily observed for more complex magnetic fields and may be mistaken for background noise. Depending on the LOS angle, the observable signatures of waves reflect some of the magnetic field braiding, particularly when multiple emission lines are available. In the more braided simulation, signatures of phase mixing can be identified. We identify possible ambiguities in the interpretation of wave modes based on the synthetic emission signatures. Conclusions. Most of the observables within this article behave as expected, given knowledge of the evolution of the parameters in 3D space. However, some intriguing observational signatures are present. Detecting regions of magnetic field complexity is somewhat possible when waves are present. However, simultaneous spectroscopic imaging from different lines is important to identify these locations. Care needs to be taken when interpreting intensity and Doppler velocity signatures as torsional motions as, in our setup, such signatures were a consequence of the magnetic field complexity and not torsional waves. Finally, the kinetic energy, estimated with Doppler velocities, is dependent on the polarisation of the wave, complexity of the background field and the LOS.

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