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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Designing diffractive optical elements for special functions using a rigorous method
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Designing diffractive optical elements for special functions using a rigorous method

机译:使用严格的方法设计特殊功能的衍射光学元件

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The rapid miniaturization in technologies for signal, image processing and optical communication increases the need for diffractive optical elements (DOEs), whose scales move closer to that of the illumination wavelength. The optical behaviour of DOEs is dependent on the polarization of the incident light, and so it is necessary to use a rigorous electromagnetic theory of diffraction to accurately design and analyse its performance. An iterative optimization algorithm for designing two dimensional, finite aperture, aperiodic diffractive optical elements based on a rigorous electromagnetic computation model—the finite-difference time-domain method—has been introduced. The algorithm can present rigorous design results with reasonable computational cost. Two kinds of DOEs designed by our algorithm, one for realizing the beam deflection used for integration optical systems, etc, and the other for realizing 1-to-2 beam split and 1-to-3 beam split, used for optical interconnections, etc, are presented. The simulated results have shown that our method has advantages of good optimization potential, high convergence and is an attractive approach for the rigorous design of DOEs.
机译:信号,图像处理和光通信技术的迅速小型化增加了对衍射光学元件(DOE)的需求,其尺寸越来越接近照明波长。 DOE的光学行为取决于入射光的偏振,因此有必要使用严格的电磁衍射理论来准确设计和分析其性能。引入了一种基于严格的电磁计算模型(时域有限差分时域方法)设计二维有限孔径非周期性衍射光学元件的迭代优化算法。该算法能够以合理的计算成本呈现出严格的设计结果。我们的算法设计了两种DOE,一种用于实现集成光学系统等的光束偏转,另一种用于实现用于光学互连等的1对2分束和1对3分束。 ,介绍。仿真结果表明,该方法具有优化潜力大,收敛性高的优点,是严格设计DOE的一种有吸引力的方法。

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