首页> 外文期刊>The Astrophysical Journal. Letters >ON THE SOURCE OF PROPAGATING SLOW MAGNETOACOUSTIC WAVES IN SUNSPOTS
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ON THE SOURCE OF PROPAGATING SLOW MAGNETOACOUSTIC WAVES IN SUNSPOTS

机译:关于在太阳黑子中传播慢磁声波的来源

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Recent high-resolution observations of sunspot oscillations using simultaneously operated ground-and space-based telescopes reveal the intrinsic connection between different layers of the solar atmosphere. However, it is not clear whether these oscillations are externally driven or generated in situ. We address this question by using observations of propagating slow magnetoacoustic waves along a coronal fan loop system. In addition to the generally observed decreases in oscillation amplitudes with distance, the observed wave amplitudes are also found to be modulated with time, with similar variations observed throughout the propagation path of the wave train. Employing multi-wavelength and multi-instrument data, we study the amplitude variations with time as the waves propagate through different layers of the solar atmosphere. By comparing the amplitude modulation period in different layers, we find that slow magnetoacoustic waves observed in sunspots are externally driven by photospheric p-modes, which propagate upward into the corona before becoming dissipated.
机译:最近使用同时运行的地基和天基望远镜对黑子振荡的高分辨率观测揭示了太阳大气不同层之间的内在联系。但是,尚不清楚这些振荡是外部驱动还是在原位产生。我们通过使用沿冠状扇环系统传播的慢磁声波的观测资料来解决这个问题。除了通常观察到的振荡振幅随距离的减小外,还发现观察到的波振幅随时间调制,在整个波列的传播路径上观察到相似的变化。利用多波长和多仪器数据,我们研究了随着波传播通过太阳大气的不同层而引起的幅度随时间的变化。通过比较不同层中的振幅调制周期,我们发现在黑子中观察到的慢磁声波是由光球p型模式外部驱动的,该模式在散发之前向上传播到电晕中。

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