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首页> 外文期刊>Geophysical Research Letters >Identification of the temperature gradient instability as the source of decameter-scale ionospheric irregularities on plasmapause field lines
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Identification of the temperature gradient instability as the source of decameter-scale ionospheric irregularities on plasmapause field lines

机译:确定温度梯度不稳定性是等离子体暂停磁力线上数十米电离层不规则性的根源

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摘要

Recent observations with the new mid-latitude SuperDARN HF radar located at Wallops Island, Virginia have identified a class of ionospheric irregularities that is prevalent in the nightside sub-auroral ionosphere under low-to-moderate Kp conditions. These irregularities can be observed for many hours and generally exhibit very low Doppler velocities. A recent collaborative experiment using the Wallops radar and the Millstone Hill incoherent scatter radar has determined that these irregularities are located at the ionospheric footprint of the plasmapause and in a region of opposed electron density and electron temperature gradients. We conclude that the irregularities are produced by the temperature gradient instability (TGI) or by turbulent cascade from primary irregularity structures produced from this instability. This is the first experimental confirmation that the TGI is effective in producing decameter-scale ionospheric irregularities.
机译:位于弗吉尼亚州Wallops岛的新型中纬度SuperDARN HF雷达的最新观测结果,发现了一类电离层不规则现象,在低至中等Kp条件下,在夜间极光下电离层普遍存在。这些不规则现象可以观察许多小时,并且通常表现出非常低的多普勒速度。最近使用Wallops雷达和Millstone Hill非相干散射雷达进行的一项合作实验已经确定,这些不规则现象位于等离子暂停的电离层足迹处以及相对的电子密度和电子温度梯度区域。我们得出的结论是,不规则性是由温度梯度不稳定性(TGI)产生的,或者是由这种不稳定性产生的主要不规则结构的湍流级联产生的。这是第一个实验证明,TGI可有效产生数十米级的电离层不规则现象。

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