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Method for the design of diffractive optical elements through low-dimensional optimization

机译:低维优化设计衍射光学元件的方法

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摘要

A method for the simulation and design of diffractive optical structures is presented. In this paper, we present a design of a finite diffractive-optic structure that has been generated by solving for the electromagnetic fields inside an optimization loop. The scalar electromagnetic fields are computed in the region of a two-dimensional diffractive-optic structure by solving the scalar Helmholtz equation, using the finite-difference method. This analysis process is inserted into a simulated annealing algorithm that designs the optimal structure by maximizing a predetermined figure of merit. Computationally efficient methods that allow for reasonable computational requirements are described, including the defining of structure parameters as relatively simple polynomial functions. This allows for changes in the structure to be made by the program while maintaining a small number of dimensions for the search by the simulated annealing algorithm.
机译:提出了一种模拟和设计衍射光学结构的方法。在本文中,我们提出了一种有限衍射光学结构的设计,该结构是通过求解优化循环内的电磁场而生成的。通过使用有限差分方法求解标量亥姆霍兹方程,可以在二维衍射光学结构的区域中计算标量电磁场。将此分析过程插入到模拟退火算法中,该算法通过最大化预定的品质因数来设计最佳结构。描述了允许合理计算要求的计算有效方法,包括将结构参数定义为相对简单的多项式函数。这允许程序更改结构,同时保留少量尺寸以供模拟退火算法搜索。

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