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Remote sensing of mesospheric dust layers using active modulation of PMWE by high-power radio waves

机译:利用大功率无线电波对PMWE的主动调制对中层尘埃层进行遥感

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摘要

This paper presents the first study of the modulation of polar mesospheric winter echoes (PMWE) by artificial radio wave heating using computational modeling and experimental observation in different radar frequency bands. The temporal behavior of PMWE response to HF pump heating can be employed to diagnose the charged dust layer associated with mesospheric smoke particles. Specifically, the rise and fall time of radar echo strength as well as relaxation and recovery time after heater turn-on and turnoff are distinct parameters that are a function of radar frequency. The variation of PMWE strength with PMWE source region parameters such as electron-neutral collision frequency, photodetachment current, electron temperature enhancement ratio, dust density, and radius is considered. The comparison of recent PMWE measurements at 56 MHz and 224 MHz with computational results is discussed, and dust parameters in the PMWE generation regime are estimated. Predictions for HF PMWE modification and its connection to the dust charging process by free electrons is investigated. The possibility for remote sensing of dust and plasma parameters in artificially modified PMWE regions using simultaneous measurements in multiple frequency bands are discussed. © 2016. American Geophysical Union. All Rights Reserved.
机译:本文通过计算模型和在不同雷达频段的实验观测,提出了通过人工无线电波加热对极地中层冬季回波(PMWE)进行调制的第一项研究。 PMWE对HF泵加热的响应的时间行为可用于诊断与中层烟雾颗粒相关的带电尘埃层。具体来说,雷达回波强度的上升和下降时间以及加热器打开和关闭后的弛豫和恢复时间是与雷达频率有关的不同参数。考虑了PMWE强度随PMWE源区域参数(如电子中性碰撞频率,光解离电流,电子温度增强比,粉尘密度和半径)的变化。讨论了最近在56 MHz和224 MHz的PMWE测量结果与计算结果的比较,并估算了PMWE产生方式中的粉尘参数。研究了HF PMWE改性的预测以及其与自由电子与粉尘充电过程的联系。讨论了使用多个频带中的同时测量值对人工修饰的PMWE区域中的灰尘和等离子体参数进行遥感的可能性。 ©2016。美国地球物理联合会。版权所有。

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