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Analysis and synthesis of circular diffractive lens with local linear grating model and rigorous coupled-wave theory

机译:基于局部线性光栅模型和严格耦合波理论的圆衍射透镜分析与合成

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摘要

We describe a local linear grating model that permits estimation of the diffraction efficiency of high-numerical-aperture two-dimensional circular lenses with one-dimensional rigorous coupled-wave analysis. The model is self-consistent and is consistent with the scalar theory that results for low, numerical-aperture lenses. The accuracy of the model increases with the number of Fresnel zones of the lens. On the basis of this model we optimize the discrete phase profile of the lens for the maximum diffraction efficiency, using the random search method. The TE and the TM modes are optimized simultaneously. Their phase variations as functions of local grating periods are removed by cyclic shifts of the grating profiles, resulting in constructive summation at the focus and high diffraction efficiency. # 1997 Optical Society of America [S0740-3232(97)00607-8] Key words: diffractive lens, rigorous coupled-wave analysis, optimization.
机译:我们描述了一种局部线性光栅模型,该模型允许通过一维严格耦合波分析来估计高数值孔径二维圆形透镜的衍射效率。该模型是自洽的,并且与用于低数值孔径镜头的标量理论一致。模型的精度随镜头菲涅耳区的数量而增加。在此模型的基础上,我们使用随机搜索方法为最大衍射效率优化了透镜的离散相轮廓。同时优化TE模式和TM模式。通过光栅轮廓的循环移位消除了它们作为局部光栅周期函数的相位变化,从而在焦点处实现了结构性求和,并且衍射效率很高。 #1997美国光学学会[S0740-3232(97)00607-8]关键词:衍射透镜,严格的耦合波分析,优化。

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