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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Rigorous electromagnetic analysis of the common focusing characteristics of a cylindrical microlens with long focal depth and under multiwavelength illumination
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Rigorous electromagnetic analysis of the common focusing characteristics of a cylindrical microlens with long focal depth and under multiwavelength illumination

机译:对长焦深和多波长照明下的圆柱形微透镜的共同聚焦特性进行严格的电磁分析

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摘要

The common focusing characteristics of a cylindrical microlens with a long focal depth and under a given multiple-wavelength illumination are analyzed based on the boundary element method (BEM). The surface-relief profile of a finite-substrate-thickness microlens with a long focal depth is presented. Its focusing performances, such as the common extended focal depth (CEFD), the spot size, and the diffraction efficiency, are numerically studied in the case of TE polarization. The results show that the CEFD of the microlens increases initially, reaches a peak value, and then decreases with increasing preset focal depth. Two modified profiles of a finite-substrate-thickness cylindrical microlens are proposed for enlarging the CEFD. The rigorous numerical results indicate that the modified surface-relief structures of a cylindrical microlens can successfully modulate the optical field distribution to achieve longer CEFD, higher transverse resolution, and higher diffraction efficiency simultaneously, compared with the prototypical microlens. These investigations may provide useful information for the design and application of micro-optical elements in various multiwavelength optical systems. (c) 2007 Optical Society of America
机译:基于边界元法(BEM),分析了焦深长的圆柱形微透镜在给定的多波长照射下的共同聚焦特性。提出了具有长焦深的有限基底厚度微透镜的表面浮雕轮廓。在TE偏振的情况下,通过数值研究了其聚焦性能,例如普通扩展焦深(CEFD),光斑尺寸和衍射效率。结果表明,微透镜的CEFD最初会增大,达到峰值,然后随着预设焦深的增加而减小。为了扩大CEFD,提出了两种修改的有限基底厚度的圆柱微透镜轮廓。严格的数值结果表明,与典型的微透镜相比,圆柱形微透镜的改进的表面浮雕结构可以成功地调制光场分布,从而同时获得更长的CEFD,更高的横向分辨率和更高的衍射效率。这些研究可为各种多波长光学系统中微光学元件的设计和应用提供有用的信息。 (c)2007年美国眼镜学会

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