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首页> 外文期刊>Space Science Reviews >Standing slow-mode waves in hot coronal loops: Observations, modeling, and coronal seismology
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Standing slow-mode waves in hot coronal loops: Observations, modeling, and coronal seismology

机译:在高温日冕环中的慢波驻波:观测,建模和日冕地震学

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摘要

Strongly damped Doppler shift oscillations are observed frequently associated with flarelike events in hot coronal loops. In this paper, a review of the observed properties and the theoretical modeling is presented. Statistical measurements of physical parameters (period, decay time, and amplitude) have been obtained based on a large number of events observed by SOHO/SUMER and Yohkoh/BCS. Several pieces of evidence are found to support their interpretation in terms of the fundamental standing longitudinal slow mode. The high excitation rate of these oscillations in small- or micro-flares suggest that the slow mode waves are a natural response of the coronal plasma to impulsive heating in closed magnetic structure. The strong damping and the rapid excitation of the observed waves are two major aspects of the waves that are poorly understood, and are the main subject of theoretical modelling. The slow waves are found mainly damped by thermal conduction and viscosity in hot coronal loops. The mode coupling seems to play an important role in rapid excitation of the standing slow mode. Several seismology applications such as determination of the magnetic field, temperature, and density in coronal loops are demonstrated. Further, some open issues are discussed.
机译:经常观察到强阻尼多普勒频移振荡,这与热冠状环中的耀斑状事件有关。在本文中,对观察到的性质和理论模型进行了综述。已根据SOHO / SUMER和Yohkoh / BCS观测到的大量事件获得了物理参数(周期,衰减时间和幅度)的统计测量值。发现了几项证据来支持其关于基本站立纵向慢速模式的解释。在小火炬或微火炬中,这些振荡的高激发速率表明,慢模波是冠状等离子体对封闭磁结构中的脉冲加热的自然响应。观测波的强阻尼和快速激发是人们对波的两个主要方面,人们对此知之甚少,并且是理论建模的主要对象。发现慢波主要受热冠状环中的热传导和粘性所衰减。模式耦合似乎在站立慢模式的快速激发中起重要作用。演示了几种地震学应用,例如确定冕环中的磁场,温度和密度。此外,讨论了一些未解决的问题。

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