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Designs and Tolerances of Numerical Aperture 0.8 Objective Lenses for Page-Based Holographic Data Storage Systems

机译:基于页面的全息数据存储系统的数值孔径0.8物镜的设计和公差

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摘要

A two-element aspheric objective lens having numerical aperture (NA) of 0.8 has been designed for media interchangeable holographic recordings. Lens design tolerance of offence against the sine condition and lens aberrations of object and reference beams have been formalized by coupled wave theory and related to diffraction efficiency of holograms. An optimum first-order power arrangement of objective lenses having two air-spaced elements has been identified by minimizing fifth-order aberrations and is further optimized ray-trace-based optimization code. Within tolerances criteria required for media-interchangeable systems, the design has demonstrated high NA of 0.8 with long working distance of 20% of the focal length.
机译:具有数值孔径(NA)为0.8的两元件非球面物镜已经设计用于媒体可互换的全息记录。透镜的正弦条件下的设计容忍度以及物镜和参考光束的像差已通过耦合波理论形式化,并且与全息图的衍射效率有关。通过使五阶像差最小化,已经确定了具有两个空气间隔元件的物镜的最佳一阶屈光力布置,并且该最优一阶屈光力布置是基于射线迹线的优化代码。在介质可互换系统所需的公差标准内,该设计证明其NA值为0.8,工作距离为焦距的20%。

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  • 来源
    《Japanese journal of applied physics》 |2009年第3issue2期|13-20|共8页
  • 作者单位

    Department of Electrical Engineering, Stanford University, Stanford, CA 94305, U.S.A.;

    Department of Electrical Engineering, Stanford University, Stanford, CA 94305, U.S.A.;

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  • 正文语种 eng
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