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Optimal design of diffractive optical elements with functional relationship between phase and amplitude modulations using nonlinear optimization methods

机译:使用非线性优化方法优化具有相位和幅度调制之间函数关系的衍射光学元件的优化设计

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摘要

In this paper, the optimal design problem of diffractive optical elements having a functional relationship between phase and amplitude modulations is investigated by using nonlinear optimization methods. Comparative analysis on formulations and performances of three important iterative methods (iterative Fourier-transform algorithm, nonlinear conjugate gradient method, and Gauss-Newton-Levenberg-Marquardt method) is provided. The detailed design equations of each method are described and numerical results are presented. The stable convergences of three investigated algorithms are confirmed. In our design problem, the conventional phase-only modulation is not assumed but the inherent functional relationship between phase and amplitude modulations of real diffractive optical elements are taken into account. It is shown that considering the functional relationship of phase and amplitude modulations in the design of diffractive optical elements leads to improvements in uniformity and diffraction efficiency.
机译:在本文中,通过使用非线性优化方法研究了具有相位和振幅调制之间的函数关系的衍射光学元件的最佳设计问题。提供了对三种重要的迭代方法(迭代傅立叶变换算法,非线性共轭梯度方法和高斯-牛顿-莱文贝格-马夸特方法)的公式和性能的比较分析。描述了每种方法的详细设计方程,并给出了数值结果。证实了三种研究算法的稳定收敛性。在我们的设计问题中,没有假定常规的仅相位调制,而是考虑了实际衍射光学元件的相位和幅度调制之间的固有功能关系。结果表明,在衍射光学元件的设计中考虑相位和幅度调制的功能关系可以提高均匀性和衍射效率。

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