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首页> 外文期刊>Annales Geophysicae >The ion-acoustic instability in the pre-flare plasma near the loop footpoints at solar active regions
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The ion-acoustic instability in the pre-flare plasma near the loop footpoints at solar active regions

机译:耀斑前等离子体中靠近太阳活动区的回路脚点处的离子声不稳定性

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The necessary physical conditions for development of the ion-acoustic instability in the chromospheric part of a flaring loop current circuit are investigated. Two possible scenarios have been studied. First, we consider that pre-flare loop plasma with the large-scale sub-Dreicer electric field has a classical Coulomb conductivity and, second, when anomalous resistance appears due to saturation of Bernstein turbulence. The Fontenla-Avrett-Loeser (FAL) model of the solar atmosphere was used to describe the pre-flare plasma. We have shown that investigated instability can grow and develop either in the presence of the Coulomb conductivity or saturated Bernstein turbulence. We demonstrate that in the case of small-scale instability, the threshold value for the degree of nonisothermality is high and, therefore, cannot be reached by inclusion of the ordinary Joule heating. The ion-acoustic instability can develop at the pre-flare loop footpoints provided the electrons are more than 10 times hotter than the ions there.
机译:研究了在扩口式电流电路的色球层部分中产生离子声不稳定性的必要物理条件。研究了两种可能的方案。首先,我们认为具有大的次Dreicer电场的耀斑前环形等离子体具有经典的库仑电导率,其次,当由于伯恩斯坦湍流饱和而出现反常电阻时。太阳大气的Fontenla-Avrett-Loeser(FAL)模型用于描述耀斑前等离子体。我们已经表明,在库仑电导率或饱和伯恩斯坦湍流的存在下,所研究的不稳定性可能会增长和发展。我们证明,在小规模不稳定的情况下,非等温度的阈值很高,因此,不能通过包含普通的焦耳热来达到。如果电子比此处的离子热十倍以上,那么在扩口前的脚点处就会出现离子声不稳定性。

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