夜间电离层下大气传播的极化

Y. Gorishnya, A. Shvets
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引用次数: 0

摘要

利用两周大气(tweeks)的实验记录,研究了夜间条件下在地球电离层波导内传播的ELF-VLF无线电波的极化参数。在夜间观测到的脉冲代表了地球电离层波导被雷击激发的响应。沿传播路径,根据源-观测者距离和有效电离层高度的不同,一系列脉冲在不同入射角下从波导边界连续反射而成。使用我们以前工作中描述的源定位技术,我们确定了几何传播路径参数,如源范围,有效电离层高度。然后,我们利用所分析的两周波形的时频表示来推断电磁波在不同入射角下作为第一波导模式传播的极化参数。所获得的依赖关系在依赖于磁子午线的传播路径方向时表现出本质上不同的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polarization of Atmospherics Propagating Under Night-Time Ionosphere
Polarization parameters of ELF-VLF radio waves propagating within the Earth-ionosphere waveguide under night-time conditions have been investigated using experimental records of tweek-atmospherics (tweeks). Tweeks are observed during nighttime and represent a response of the Earth-ionosphere waveguide excited by lightning strokes. Tweeks are formed by series of pulses consecutively reflected from the waveguide boundaries under different incident angles depending on a source-observer distance and effective ionosphere height along a propagation path. Using a source location technique described in our previous works we determined geometrical propagation path parameters such as source range, effective ionosphere height. We used then a time-frequency representation of the analyzed tweek waveforms to infer polarization parameters of the electromagnetic waves propagated under different incident angles as the first waveguide mode. Obtained dependencies show substantially different behavior in depend on a propagation path orientation in refer to the magnetic meridian.
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