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The Sech/sup 2/-model in new applications

机译:新应用中的Sech / sup 2 /模型

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摘要

We present a theoretical study of HF wave propagation through the ionosphere. The purpose is to illustrate how various propagation effects arise, firstly due to the large-scale structure of an ionospheric layer, secondly due to density perturbations present in that layer. Some results are well-known, others are new. The treatment is based on a report by Zernov and Lundborg (see IRF Scientific Report 215, 1993). The given model permits a fully analytic representation of the background electromagnetic field in the geometrical-optics approximation, but still gives a realistic description of propagation through an ionospheric layer. Since the model is continuous in all its derivatives, it has significant computational advantages. We illustrate the background field in terms of the rays, the eikonal and the level. The article also includes the skip distance fading. Using that field, we then investigate some effects of particular deterministic perturbations epsilon , viz. a wave-like and a local anisotropic Gaussian disturbance. We treat these cases in the geometrical-optics approximation and within single-scattering theory.
机译:我们介绍了通过电离层的HF波传播的理论研究。目的是说明如何引起各种传播效应,首先是由于电离层层的大规模结构,其次是由于该层中存在的密度扰动。一些结果是众所周知的,其他结果是新的。该治疗基于Zernov和Lundborg的报告(参见IRF科学报告215,1993)。给定的模型允许背景电磁场在几何光学近似下的完全分析表示,但仍然给出通过电离层的传播的现实描述。由于该模型在所有衍生物中连续,因此它具有显着的计算优势。我们以光线,eikonal和水平的方式说明了背景领域。本文还包括跳过距离衰落。使用该领域,我们调查特定确定性扰动epsilon,viz的一些效果。波样和局部各向异性高斯干扰。我们在几何光学近似和单散射理论内对这些情况进行治疗。

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