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Hybrid ray-mode parametrization of high frequency propagation in an open waveguide with inhomogeneous transverse refractive index: formulation and application to a bilinear surface duct

机译:横向折射率不均匀的开放波导中高频传播的混合射线模式参数化:公式和在双线性表面导管中的应用

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摘要

The authors discuss a general complex spectral approach to representing high-frequency source-excited fields in open guiding environments characterized by a continuously varying refractive index in the cross section transverse to the propagation direction. The authors use problem parameters that are motivated by electromagnetic wave propagation in the Earth's atmosphere, in particular, a tropospheric surface duct adjacent to the Earth's surface. The main objective is the development of an observable-based algorithm that self-consistently incorporates various wave objects that synthesize the high-frequency propagation process in a numerically efficient and physically incisive manner. The authors concentrate on ray fields and mode fields, either individually or, most generally, in a rigorous self-consistent hybrid combination. Explicit solutions are generated for a bilinear refractive index profile that generates a leaky surface duct. For numerical results see ibid., vol.39, no.6, p.789-97 (1991).
机译:作者讨论了一种通用的复杂频谱方法,用于表示开放式引导环境中的高频源激发场,其特征是在垂直于传播方向的横截面中折射率连续变化。作者使用的问题参数是由电磁波在地球大气中传播所激发的,特别是与地球表面相邻的对流层表面管道。主要目标是开发一种基于可观察的算法,该算法可自洽地合并各种波对象,这些波对象以数值有效和物理敏锐的方式合成高频传播过程。作者专注于射线场和模场,无论是单独的还是最严格的自洽混合组合。对于产生泄漏表面导管的双线性折射率分布,生成显式解。有关数值结果,请参见同上,第39卷,第6期,第789-97页(1991)。

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