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Ionospheric Signatures of Secondary Waves From Quasi- 6-Day Wave and Tide Interactions

机译:电离层签名的第二波准起波浪和潮汐的交互

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摘要

A sudden stratospheric waring occurred in the southern hemisphere during September 2019, accompanied by an exceptionally strong quasi-6-day wave (Q6DW). We examine the ionospheric response using global total electron content (TEC) maps, with a focus on the short-period variability (5-48 h). A Fourier analysis of the TEC data reveals ionospheric variations associated with the secondary waves due to the non-linear interaction between the Q6DW and atmospheric tides. The largest signatures among them are related to the ~29-h standing oscillation, which is attributable to the Q6DW interaction with the migrating diurnal tide, with the maximum amplitude ~8% of the zonal mean. Also detected are the signatures associated with the westward-propagating ~13-h oscillation with the zonal wavenumber 1 (~4%) and westward-propagating ~11-h oscillation with the zonal wavenumber 3 (~3%), both of which can be attributed to the Q6DW interaction with the migrating semidiurnal tide. The signatures related to the Q6DW interaction with the migrating terdiurnal tide and some non-migrating tides are also observed. This is the first time that secondary wave signatures of the Q6DW-tidal interaction are identified in ionospheric observations with predicted zonal wavenumbers and periods. The oscillations are symmetric about the magnetic equator with amplitude peaks at ±20° magnetic latitudes, suggesting that the oscillations are generated by the modulation of the equatorial plasma fountain.
机译:突然平流层华林发生的在2019年9月,南半球伴随着异常强劲quasi-6-day波(Q6DW)。使用全球总电子电离层响应内容(TEC)地图,关注短周期变化(5-48 h),傅里叶揭示了电离层TEC的分析数据变化与二次波由于之间的非线性相互作用Q6DW潮汐和大气。其中有关~ 29-h签名站在振荡,这是由于与迁移昼夜Q6DW交互潮流,最大振幅~ 8%的区域的意思。westward-propagating ~ 13-h振荡与纬向波数1 (~ 4%)westward-propagating ~ 11-h振荡的纬向波数3(~ 3%),两者都可以归因于Q6DW交互的迁移半日潮。有关Q6DW交互的迁移terdiurnal潮流和一些不迁徙的潮汐也观察到。二次波Q6DW-tidal的签名在电离层交互识别观察与纬向波数和预测期。磁赤道与振幅峰值在±20°磁纬度,暗示振荡产生的调制赤道等离子喷泉。

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