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Evidence for the In-Situ Generation of Plasma Depletion Structures Over the Transition Region of Geomagnetic Low-Mid Latitude

机译:原位生成等离子体的证据损耗在过渡区结构的地磁Low-Mid纬度

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摘要

On a geomagnetic quiet night of October 29, 2018, we captured an observational evidence of the onset of dark band structures within the field-of-view of an all-sky airglow imager operating at 630.0 nm over a geomagnetic low-mid latitude transition region, Hanle, Leh Ladakh. Simultaneous ionosonde observations over New Delhi shows the occurrence of spread-F in the ionograms. Additionally, virtual and peak height indicate vertical upliftment in the F layer altitude and reduction in the ionospheric peak frequency were also observed when the dark band pass through the ionosonde location. All these results confirmed that the observed depletions are indeed associated with ionospheric F region plasma irregularities. The rate of total electron content index (ROTI) indicates the absence of plasma bubble activities over the equatorial/low latitude region which confirms that the observed event is a midlatitude plasma depletion. Our calculations reveal that the growth time of the plasma depletion is ~2 h if one considers only the Perkins instability mechanism. This is not consistent with the present observations as the plasma depletion developed within ~25 min. By invoking possible Es layer instabilities and associated E-F region coupling, we show that the growth rate increases roughly by an order of magnitude. This strongly suggests that the Cosgrove and Tsunoda mechanism may be simultaneously operational in this case. Furthermore, it is also suggested that reduced F region flux-tube integrated conductivity in the southern part of onset region created conducive background conditions for the growth of the plasma depletion on this night.
机译:2018年10月29日,在地磁宁静的夜晚,我们捕获的观测证据在出现黑带结构全天大气光成像视场在地磁low-mid操作630.0海里纬度过渡区、Hanle列城拉达克。同时ionosonde观察新德里显示spread-F的发生电离图。表明在电离层垂直提升电离层峰值的高度和减少频率也观察到当黑暗的乐队通过ionosonde位置。结果证实,观察消逝确实是与电离层F区等离子违规行为。内容索引(烤肉)表示的缺失等离子体在赤道/低泡沫活动纬度地区观测证实事件是一个中间纬度等离子损耗。计算结果表明,增长的时候等离子体消耗h ~ 2如果只考虑之一帕金斯不稳定机制。与目前的观察一致血浆内损耗发达~ 25分钟。调用可能Es层不稳定相关E-F区域耦合,我们表明,增长率大约增加的订单大小。•和Tsunoda机制在这种情况下同时操作。此外,还建议减少F区域通量管集成的电导率南部爆发地区创造了有利发展的背景条件等离子体消耗在这个晚上。

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