论文标题

开放冠状结构中的MHD波

MHD Waves in open coronal structures

论文作者

Banerjee, D., Prasad, S. Krishna, Pant, V., McLaughlin, J. A., Antolin, P., Magyar, N., Ofman, L., Tian, H., Van Doorsselaere, T., De Moortel, I., Wang, T.

论文摘要

现代观察者揭示了太阳能电晕中无处不在的磁流失动力波。传播波(与驻波相反)通常起源于较低的太阳大气层,这使其与冠状加热特别相关。此外,据信开放的冠状结构是太阳风的源区域,因此,这些结构中MHD波的检测也与太阳风的加速有关。此外,当前一代望远镜的高级功能使我们能够通过MHD地震学提取重要的冠状特性。本评论文章介绍了慢速慢性声波和扭结(alfvénic)波的检测,起源和阻尼的最新进展,尤其是在开放的冠状结构的背景下。在适当的情况下,我们概述了相关的理论建模研究。讨论了这些波浪的一些重要地震学应用。还涉及Aflvénic波在太阳风加速中的可能作用。

Modern observatories have revealed the ubiquitous presence of magnetohydrodynamic waves in the solar corona. The propagating waves (in contrast to the standing waves) are usually originated in the lower solar atmosphere which makes them particularly relevant to coronal heating. Furthermore, open coronal structures are believed to be the source regions of solar wind, therefore, the detection of MHD waves in these structures is also pertinent to the acceleration of solar wind. Besides, the advanced capabilities of the current generation telescopes have allowed us to extract important coronal properties through MHD seismology. The recent progress made in the detection, origin, and damping of both propagating slow mangetoacoustic waves and kink (Alfvénic) waves is presented in this review article especially in the context of open coronal structures. Where appropriate, we give an overview on associated theoretical modelling studies. A few of the important seismological applications of these waves are discussed. The possible role of Aflvénic waves in the acceleration of solar wind is also touched upon.

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