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Multiregion apodized photon sieve with enhanced efficiency and enlarged pinhole sizes

机译:具有更高效率和更大针孔尺寸的多区域变迹光子筛

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摘要

A novel multiregion structure apodized photon sieve is proposed. The number of regions, the apodization window values, and pinhole sizes of each pinhole ring are all optimized to enhance the energy efficiency and enlarge the pinhole sizes. The design theory and principle are thoroughly proposed and discussed. Two numerically designed apodized photon sieves with the same diameter are given as examples. Comparisons have shown that the multiregion apodized photon sieve has a 25.5% higher energy efficiency and the minimum pinhole size is enlarged by 27.5%. Meanwhile, the two apodized photon sieves have the same form of normalized intensity distribution at the focal plane. This method could improve the flexibility of the design and the fabrication the apodized photon sieve. (C) 2015 Optical Society of America
机译:提出了一种新颖的多区域结构变迹光子筛。每个针孔环的区域数量,切趾窗值和针孔尺寸均经过优化,以提高能效并扩大针孔尺寸。设计理论和原理被彻底地提出和讨论。给出了两个具有相同直径的数值设计的变迹光子筛子作为示例。比较表明,多区域切趾光子筛的能效高25.5%,最小针孔尺寸扩大了27.5%。同时,两个变迹的光子筛在焦平面处具有相同形式的归一化强度分布。该方法可以提高切趾光子筛的设计和制造的灵活性。 (C)2015年美国眼镜学会

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