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Beam Summation Theory for Waves in Fluctuating Media. Part I: The Beam Frame and the Beam-Domain Scattering Matrix

机译:波动介质中波的光束求和理论。第一部分:光束框架和光束域散射矩阵

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We present a novel beam summation (BS) formulation for tracking wavefields in fluctuating media. This formulation utilizes the ultrawideband phase-space BS method, which is structured upon a windowed Fourier transform (WFT) frame expansion of the sources and expresses the field as a discrete phase-space sum of beam propagators. This paper extends the frame concept, proving that this beam set constitutes a frame not only in the source domain, where it reduces to the conventional WFT, but everywhere in the propagation domain. This “beam frame” provides a self-consistent framework for tracking wavefields through scattering media in which the local interaction of the incident beams with the medium is expanded using the same set of beams. The resulting beam-to-beam (B2B) scattering coefficients depend on the local spectral properties of the medium. The overall B2B scattering matrix is therefore compact, coupling only beams that are adjacent in phase space, given the fluctuation properties. The new formulation expresses the entire scattering problem in terms of coefficients dynamics in the phase space. As demonstrated, the formulation is computationally efficient and captures all the relevant phenomenology. Part II extends this formulation for stochastic fields in random fluctuating medium characterized by the medium statistics.
机译:我们提出了一种新颖的光束求和(BS)公式,用于跟踪波动介质中的波场。该公式利用超宽带相空间BS方法,该方法基于源的窗口傅立叶变换(WFT)帧扩展,并将场表示为光束传播器的离散相空间总和。本文扩展了帧概念,证明了该波束集不仅在源域中构成了一个帧,在传统的WFT上它可以简化为帧,在传播域中的任何地方都可以构成一个帧。这个“光束框架”提供了一个自洽的框架,用于通过散射介质跟踪波场,其中使用同一组光束扩展了入射光束与介质的局部相互作用。最终的束间(B2B)散射系数取决于介质的局部光谱特性。因此,整个B2B散射矩阵紧凑,在给定波动特性的情况下,仅耦合相空间中相邻的光束。新公式用相空间中的系数动力学表达了整个散射问题。如所证明的,该制剂在计算上是有效的,并且捕获了所有相关的现象学。第二部分将这种公式扩展到以介质统计为特征的随机波动介质中的随机场。

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