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首页> 外文期刊>Ecological restoration >Model of the propagation of very low-frequency beams in the Earth-ionosphere waveguide: principles of the tensor impedance method in multi-layered gyrotropic waveguides
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Model of the propagation of very low-frequency beams in the Earth-ionosphere waveguide: principles of the tensor impedance method in multi-layered gyrotropic waveguides

机译:基地电离层波导中非常低频梁的繁殖模型:多层旋转波导的张量阻抗法的原理

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摘要

The modeling of very low-frequency (VLF) electromagnetic (EM) beam propagation in the Earth-ionosphere waveguide (WGEI) is considered. A new tensor impedance method for modeling the propagation of electromagnetic beams in a multi-layered and inhomogeneous waveguide is presented. The waveguide is assumed to possess the gyrotropy and inhomogeneity with a thick cover layer placed above the waveguide. The influence of geomagnetic field inclination and carrier beam frequency on the characteristics of the polarization transformation in the Earth-ionosphere waveguide is determined. The new method for modeling the propagation of electromagnetic beams allows us to study the (i) propagation of the very low-frequency modes in the Earth-ionosphere waveguide and, in perspective, their excitation by the typical Earth-ionosphere waveguide sources, such as radio wave transmitters and lightning discharges, and (ii) leakage of Earth-ionosphere waveguide waves into the upper ionosphere and magnetosphere. The proposed approach can be applied to the variety of problems related to the analysis of the propagation of electromagnetic waves in layered gyrotropic and anisotropic active media in a wide frequency range, e.g., from the Earth-ionosphere waveguide to the optical waveband, for artificial signal propagation such as metamaterial microwave or optical waveguides.
机译:考虑了地球 - 电离层波导(WGEI)中非常低频(VLF)电磁(EM)光束传播的建模。提出了一种用于建模电磁束在多层和不均匀波导中的传播的新的张测阻抗方法。假设波导具有陀螺凋亡和不均匀性,厚厚的覆盖层放置在波导上方。确定地磁场倾斜和载波频率对地球 - 电离层波导中偏振变换特性的影响。用于建模电磁束传播的新方法使我们能够研究(i)通过典型的地球电离层波导源的典型电离层波导中的非常低频模式的传播,例如它们的激发无线电波发射器和雷击,(ii)地球电离层波导波泄漏到上电离层和磁层中。所提出的方法可以应用于与分层旋转型和各向异性活性介质中的电磁波在宽频率范围内的电磁波传播的各种问题,例如从地电离层波导到光波带,用于人工信号传播如超材料微波或光波导。

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