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Unusual Quasi 10-Day Planetary Wave Activity and the Ionospheric Response During the 2019 Southern Hemisphere Sudden Stratospheric Warming

机译:不寻常的准为期10天的行星波活动,在2019年的南方的电离层响应半球突然平流层变暖

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摘要

An unusual sudden stratospheric warming (SSW) event occurred in the Southern Hemisphere in September 2019. Ground-based and satellite observations show the presence of transient eastward-and westward-propagating quasi-10 day planetary waves (Q_(10)DWs) during the SSW. The planetary wave activity maximizes in the mesosphere and lower thermosphere region approximately 10 days after the SSW onset. Analysis indicates that the westward-propagating Q_(10)DW with zonal wave number s = 1 is mainly symmetric about the equator, which is contrary to theory which predicts the presence of an antisymmetric normal mode for such planetary wave. Observations from microwave limb sounder and sounding of the atmosphere using broadband emission radiometry are combined with meteor radar wind measurements from Antarctica, providing a comprehensive view of Q_(10)DW wave activity in the Southern Hemisphere during this SSW. Analysis suggests that the Q_(10)DWs of various wavenumbers are potentially excited from nonlinear wave-wave interactions that also involve stationary planetary waves with s = 1 and s = 2. The Q_(10)DWs are also found to couple the ionosphere with the neutral atmosphere. The timing of the quasi-10-day oscillations (Q_(10)DOs) in the ionosphere are contemporaneous with the Q_(10)DWs in the neutral atmosphere during a period of relatively low solar and geomagnetic activity, suggesting that the Q_(10)DWs play a key role in driving the ionospheric Q_(10)DOs during the Southern SSW event. This study provides observational evidence for coupling between the neutral atmosphere and ionosphere through the upward propagation of global scale planetary waves.
机译:突然一个不寻常的平流层变暖(量)事件发生在南半球2019年9月。观察显示瞬态的存在东边和westward-propagating quasi-10天行星波(Q_ (10) DWs)量。行星波活动最大化中间层和较低的热电离层区域发病西南偏南约后大约10天。分析表明,westward-propagatingQ_(10)与纬向波数DW s = 1主要是对赤道对称,这是相反的理论预测的存在反对称正常模式这样的行星波。并使用宽带测深的大气发射辐射测量结合流星雷达测量风从南极洲,提供一个全面的视图的Q_ (10) DW波活动期间在南半球量。不同波数都是潜在的兴奋非线性波波交互包括固定与s = 1和行星波s = 2。与中性大气电离层。quasi-10-day振荡的时间在电离层(Q_ (10) DOs)是同时发生的Q_ (10) DWs中性大气在一个太阳能和相对较低的时期地磁活动,这表明Q_(10)在推动DWs发挥关键的作用电离层Q_ (10) DOs在南方的量事件。中性大气和之间的耦合通过向上传播的电离层全球范围内行星波。

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