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Imaging of sub-surface nanostructures by dielectric planer cavity coupled microsphere lens

机译:电介质平面腔耦合微球镜对副表面纳米结构的成像

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摘要

In this paper, a dielectric planar cavity between an object and a microsphere lens is fabricated and its effects on the imaging of sub-surface nanostructures have been studied. Using the dielectric planar cavity combined (DPCC) silica microsphere lens, our experimental results illustrate that the nanostructures of data-recorded Blu-ray disc can be clearly resolved. Optical images of the object with higher contrast and larger field of view (FOV) can be obtained, compared to the case when only a microsphere lens is used. For the 3.4 mu m diameter microsphere lens combing a planar cavity with a thickness about 2.2 mu m, the FOV is about 2.4 mu m and the magnification is about 1.6. With the 3.4 mu m diameter microsphere lens only, the FOV and magnification is 1.5 mu m and 1.4 respectively. Theoretical analysis of the imaging properties is carried out by the characteristics of electric field distribution of microsphere lenses. The simulated results indicate that the dielectric planar cavity working as a Fabry-Perot cavity can effectively enhance the coupling of optical information. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文研究了物体与微球镜之间的介电平面腔,并研究了对亚表面纳米结构的成像的影响。使用介电平面腔组合(DPCC)二氧化硅微球镜,我们的实验结果说明了数据记录的蓝光盘的纳米结构可以清楚地解决。与仅使用微球镜片的情况相比,可以获得具有更高对比度和更大的视场(FOV)的物体的光学图像。对于3.4μm的直径微球镜,厚度约为2.2μm的平面腔,FOV约为2.4μm,放大率约为1.6。只有3.4μm直径的微球镜,FOV和放大率分别为1.5亩,1.4。成像性能的理论分析是通过微球镜片的电场分布特性进行的。模拟结果表明,作为法布里 - 珀罗腔的介电平面腔可以有效地增强光学信息的耦合。 (c)2016 Elsevier B.v.保留所有权利。

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