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Quasi-Continuous Metasurface Beam Splitters Enabled by Vector Iterative Fourier Transform Algorithm

机译:通过矢量迭代傅里叶变换算法使能准连续的元表面束分路器

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摘要

Quasi-continuous metasurfaces are widely used in various optical systems and their subwavelength structures invalidate traditional design methods based on scalar diffraction theory. Here, a novel vector iterative Fourier transform algorithm (IFTA) is proposed to realize the fast design of quasi-continuous metasurface beam splitters with subwavelength structures. Compared with traditional optimization algorithms that either require extensive numerical simulations or lack accuracy, this method has the advantages of accuracy and low computational cost. As proof-of-concept demonstrations, several beam splitters with custom-tailored diffraction patterns and a 7 × 7 beam splitter are numerically demonstrated, among which the maximal diffraction angle reaches 70° and the best uniformity error reaches 0.0195, showing good consistency with the target energy distribution and these results suggest that the proposed vector IFTA may find wide applications in three-dimensional imaging, lidar techniques, machine vision, and so forth.
机译:准连续元件广泛用于各种光学系统,其亚主波长结构无效基于标量衍射理论的传统设计方法。这里,提出了一种新颖的矢量迭代傅里叶变换算法(IFTA)以实现具有子波长结构的准连续元表面束分离器的快速设计。与传统优化算法相比,需要广泛的数值模拟或缺乏准确性,该方法具有精度和计算成本低的优点。作为概念验证演示,具有定制定制衍射图案和7×7分束器的几个分束器分离器进行了数值演示,其中最大衍射角达到70°,最佳均匀误差达到0.0195,显示出良好的一致性目标能量分布和这些结果表明,所提出的矢量IFTA可以在三维成像,激光雷达技术,机器视觉等中找到广泛的应用。

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