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Diffractive micro-optical elements for implementing hollow beam and bi-focus simultaneously

机译:用于同时实现中空光束和双焦点的衍射微光学元件

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We design diffractive micro-optical elements (DMOEs) with sub-wavelength characteristic size based on a half-R-phase shifting scheme, with the aim of realizing a hollow beam and bi-focus simultaneously. The optical properties of DMOEs, such as the positions of the real focal planes, the aspect ratio of the hollow beam and the diffraction efficiency, are investigated by using the rigorous electromagnetic theory and the boundary element method. The numerical results show that a well-defined hollow beam and bi-focus are achieved simultaneously. Further analysis of the interference between dual-DMOE shows that the interference is much less than that of a conventional dual-microlens. It is indicated that the designed micro-optical element array can not only implement hollow beam and dual focus, but also suppress the interference effect significantly. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们基于半R相移方案设计了亚波长特征尺寸的衍射微光学元件(DMOE),旨在同时实现空心光束和双焦点。利用严格的电磁学原理和边界元方法研究了DMOE的光学特性,如真实焦平面的位置,空心光束的纵横比和衍射效率。数值结果表明,可以同时获得清晰的空心光束和双焦点。对双DMOE之间的干涉的进一步分析表明,该干涉远小于常规双微透镜的干涉。结果表明,所设计的微光学元件阵列不仅可以实现空心光束和双焦点,而且可以显着抑制干涉效应。 (C)2008 Elsevier Ltd.保留所有权利。

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