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Revealing the nature of magnetic shadows with numerical 3D-MHD simulations

机译:通过数值3D-MHD模拟揭示磁性阴影的本质

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Aims. We investigate the interaction of magneto-acoustic waves with magnetic network elements with the aim of finding possible signatures of the magnetic shadow phenomenon in the vicinity of network elements. Methods. We carried out three-dimensional numerical simulations of magneto-acoustic wave propagation in a model solar atmosphere that is threaded by a complexly structured magnetic field, resembling that of a typical magnetic network element and of internetwork regions. High-frequency waves of 10?mHz are excited at the bottom of the simulation domain. On?their way through the upper convection zone and through the photosphere and the chromosphere they become perturbed, refracted, and converted into different mode types. We applied a standard Fourier analysis to produce oscillatory power-maps of the line-of-sight velocity. Results. In the power maps of the upper photosphere and the lower chromosphere, we clearly see the magnetic shadow:?a?seam of suppressed power surrounding the magnetic network elements. We demonstrate that this shadow is linked to the mode conversion process and that power maps at these height levels show the signature of three different magneto-acoustic wave modes.
机译:目的我们研究磁声波与磁性网络元素的相互作用,目的是寻找网络元素附近的磁性阴影现象的可能特征。方法。我们进行了三维声波在模拟太阳大气中传播的三维数值模拟,该太阳大气中存在复杂结构的磁场,类似于典型的磁网络元件和互联网络区域。在模拟域的底部激发10?mHz的高频波。在穿过上层对流区,光球和色球的途中,它们被扰动,折射并转换为不同的模式类型。我们应用了标准的傅立叶分析来生成视线速度的振荡功率图。结果。在上部光球和下部色球的功率图中,我们清楚地看到了磁影:“一束抑制的功率围绕着磁网络元件。我们证明了该阴影与模式转换过程有关,并且在这些高度级别上的功率图显示了三种不同的磁声波模式的特征。

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