首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Investigation of VLF Transmitter Signals in the Ionosphere by ZH-1 Observations and Full-Wave Simulation
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Investigation of VLF Transmitter Signals in the Ionosphere by ZH-1 Observations and Full-Wave Simulation

机译:调查的甚低频信号发射机电离层ZH-1观测和全波模拟

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摘要

In this study, we investigate the very low frequency (VLF) signals in the ionosphere propagating from ground-based transmitters by using the data from the newly launched China Seismo-Electromagnetic Satellite (CSES), which is also called ZH-1. The simultaneous ionospheric perturbations and electron precipitations induced by the NWC transmitter are also analyzed, and the possible mechanisms are discussed. The ZH-1 and DEMETER observations of VLF transmitters are compared morphologically, which are generally consistent with the full-wave simulations. The results show that the electromagnetic waves excited by the VLF transmitters penetrate into the ionosphere and propagate in the magnetosphere to its conjugate hemisphere as a ducted or nonducted whistler. When the VLF transmitter is located at L < 1.5, the wave propagates more easily as a nonducted whistler. When the wave propagates as a ducted whistler, the point of maximum observed transmitter-induced electric field in the conjugate hemisphere will move poleward in the northern hemisphere and equatorward in the southern hemisphere. The results also show that the data stability of electromagnetic field recorded by ZH-1 satellite is almost the same as DEMETER satellite, and there is a good correlation between the ZH-1 observation and simulated results. These conclusions demonstrate that the nightside VLF band electromagnetic observation of ZH-1 satellite is stable and reliable.
机译:在这项研究中,我们调查非常低频率(甚低频)信号在电离层从地面发射机的传播使用新推出的中国的数据地震电磁卫星(cse)也叫ZH-1。过扰动和电子降雨诱发NWC发射机也分析,和可能机制进行了讨论。得墨忒耳的观察甚低频发射器形态相比,它一般与全波模拟一致。结果表明,电磁波兴奋的甚低频发射机渗透磁气圈的电离层和传播它的共轭半球导管或nonducted惠斯勒。位于L < 1.5,波传播容易nonducted惠斯勒。传播作为一个导管惠斯勒的地步最大观察transmitter-induced电共轭半球将字段向极在北半球朝赤道方向在南半球。结果还表明,数据的稳定性电磁场通过ZH-1卫星记录几乎是一样的得墨忒耳卫星,有一个很好的ZH-1之间的相关性观测和模拟结果。结论表明,阴面甚低频带电磁ZH-1的观察卫星是稳定的和可靠的。

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