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Tilted Gaussian beam propagation in inhomogeneous media

机译:倾斜高斯光束在非均匀介质中的传播

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摘要

The present work is concerned with applying a ray-centered non-orthogonal coordinate system which is a priori matched to linearly-phased localized aperture field distributions. The resulting beam-waveobjects serve as the building blocks for beam-type spectral expansions of aperture fields in 2D inhomogeneous media that are characterized by a generic wave-velocity profile. By applying a rigorous paraxial-asymptotic analysis, a novel parabolic wave equation is obtained and termed "Non-orthogonal domain parabolic equation"--NoDope. Tilted Gaussian beams, which are exact solutions to this equation, match Gaussian aperture distributions over a plane that is tilted with respect to the beam-axes initial directions. A numerical example, which demonstrates the enhanced accuracy of the tilted Gaussian beams over the conventional ones, is presented as well.
机译:本工作涉及应用以射线为中心的非正交坐标系,该坐标系先验地匹配于线性相位局部孔径场分布。产生的束波对象充当2D非均匀介质中孔径场的束型光谱扩展的构建块,其特征是通用的波速分布。通过应用严格的近轴渐近分析,获得了一个新的抛物线波动方程,并将其称为“非正交域抛物线方程” --NoDope。倾斜的高斯光束是该方程式的精确解,它与相对于光束轴初始方向倾斜的平面上的高斯孔径分布匹配。还提供了一个数值示例,该示例演示了倾斜的高斯光束比传统光束具有更高的精度。

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