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Electromagnetic field calculations for microlens optical systems.

机译:微透镜光学系统的电磁场计算。

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摘要

Microlenses are becoming more widely used in modern optical equipment. When the microlens diameter is comparable with the incident electromagnetic illumination wavelength, diffraction effects through the microlens aperture dominate and significantly affect the microlens optical properties leading to differences from that predicted by ordinary geometrical optics theory. In this work, the continuous-profile symmetrical biconvex microlens is selected for investigation. Its optical properties, with both monochromatic plane wave and TEM00 mode Gaussian beam illumination, are studied using the full-field Separation-of-Variables method (SVM) in the oblate spheroidal coordinate system by calculating the electromagnetic field distributions inside of and adjacent to the microlens. The microlens optical properties are also compared with the corresponding geometrical optics theory.;The investigations and discussions include the focusing properties of a single microlens with monochromatic plane wave illumination, the beam transformation properties of a single microlens with monochromatic TEM00 mode Gaussian beam illumination, the axial combination properties of dual microlenses with monochromatic plane wave and TEM00 mode Gaussian beam illumination, the interference properties between dual parallel-arranged microlenses with monochromatic plane wave illumination, and the imaging properties of a single microlens with monochromatic plane wave and TEM00 mode Gaussian beam illumination. The optical properties of microlens optical systems are found to be similar to that given by the geometrical optics theory. The microlens actual focal length is measured for different profile and diameter microlenses and is compared with its corresponding geometrical focal length. It is shown that the microlens actual focal length is an important parameter and can be used to describe and approximately formulate the microlens optical properties. The transmitted beam waist position through a microlens calculated using the Rayleigh Range method (RRM) with the microlens actual focal length closely matches the exact value determined using the Separation-of-Variables method in the oblate spheroidal coordinate system. The axial combination properties of dual microlenses with monochromatic plane wave illumination and the imaging properties of a single microlens can also be described using the geometrical imaging formula with the microlens actual focal length.
机译:微透镜正越来越广泛地用于现代光学设备中。当微透镜直径与入射电磁照射波长相当时,通过微透镜孔径的衍射效应将占主导地位,并显着影响微透镜的光学性能,从而导致与普通几何光学理论所预测的差异。在这项工作中,选择连续轮廓对称的双凸微透镜进行研究。通过在扁球体坐标系中使用全场变量分离法(SVM),通过计算平面内和附近的电磁场分布,研究了单色平面波和TEM00模式高斯光束照明下的光学特性。微透镜。还将微透镜的光学特性与相应的几何光学理论进行了比较。研究和讨论包括具有单色平面波照明的单个微透镜的聚焦特性,具有单色TEM00模式高斯光束照明的单个微透镜的光束转换特性,单色平面波和TEM00模式高斯光束照明的双微透镜的轴向组合特性,单色平面波照明和TEM00模式高斯光束照明的双微透镜的干涉特性以及单色平面波和TEM00模式高斯光束照明的单微透镜的成像特性。发现微透镜光学系统的光学性质与几何光学理论给出的性质相似。测量不同轮廓和直径的微透镜的微透镜实际焦距,并将其与相应的几何焦距进行比较。结果表明,微透镜的实际焦距是一个重要的参数,可以用来描述和近似公式化微透镜的光学特性。通过使用瑞利距离方法(RRM)计算的微透镜的透射光束腰部位置与微透镜的实际焦距紧密匹配,在扁球体坐标系中使用变量分离法确定的精确值。还可以使用具有微透镜实际焦距的几何成像公式来描述具有单色平面波照明的双微透镜的轴向组合特性和单个微透镜的成像特性。

著录项

  • 作者

    Wang, Jian.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering General.;Physics Electricity and Magnetism.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 258 p.
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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