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Local improvement of the signal-to-noise ratio for diffractive optical elements designed by unidirectional optimization methods

机译:通过单向优化方法设计的衍射光学元件的信噪比的局部改善

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摘要

We present a straightforward method to design multilevel phase-only diffractive optical elements with a locally improved signal-to-noise ratio in the reconstruction. The method is generally applicable to all unidirectional design schemes, such as direct search, simulated annealing, or genetic optimization. As the shape and the location of the desired low noise areas are supplied by a bit map file the method allows for the design of basically any two-dimensional low noise area. The improvement in the signal-to-noise ratio that may be achieved is considerable but also entails reduced diffraction efficiency. The suggested method is applied to different beam-splitter design examples. All examples are calculated with the scalar diffraction approximation in the far field. (C) 2002 Optical Society of America. [References: 16]
机译:我们提出了一种简单的方法来设计多级仅相位衍射光学元件,在重建中具有局部改善的信噪比。该方法通常适用于所有单向设计方案,例如直接搜索,模拟退火或遗传优化。由于所需的低噪声区域的形状和位置是由位图文件提供的,因此该方法允许设计基本上任何二维的低噪声区域。可以实现的信噪比的改善是相当可观的,但是也需要降低衍射效率。建议的方法适用于不同的分束器设计实例。所有示例均使用远场中的标量衍射近似值进行计算。 (C)2002年美国眼镜学会。 [参考:16]

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