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HOLOGRAPHIC OPTICAL ELEMENTS (DIFFRACTION, GRATING, ARRAY, LENS).

机译:全息光学元件(衍射,光栅,阵列,透镜)。

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摘要

A comprehensive treatment is presented for the diffraction efficiencies of transmission holographic elements and cascade lenses when subject to broad spectral and field-angle detunings. Experimental measurements and verifications are made on holographic optical elements. The theory of holographic grating diffraction efficiency is studied through two approaches. A numerical treatment based on the theory of thin grating decomposition is implemented and shown to be in agreement with other theories. Additionally, a more approximate approach is pursued in which the volume grating is treated as a phased array of scatterers. The latter approach leads to closed-form formulas in addition to a simple physical picture of volume effects. Extensive parametrical studies are presented for the properties of volume holographic elements. It is found that three-element cascades can exhibit spectral and field angle bandwidths essentially as broad as two-element cascades; that these bandwidths are in excess of 2300 (ANGSTROM) and 7(DEGREES), respectively; and that these can more than double with specialized techniques presented. Applications of holographic elements to imaging are presented and a paraxial chromatic thickness aberration is discussed.
机译:针对透射全息元件和级联透镜在宽光谱和视场角失谐时的衍射效率,提出了一种综合处理方法。在全息光学元件上进行实验测量和验证。全息光栅衍射效率理论是通过两种方法研究的。实施了基于薄光栅分解理论的数值处理,并证明与其他理论一致。另外,追求一种更近似的方法,其中将体光栅视为散射体的相控阵。除了体积效应的简单物理图形外,后一种方法还可以生成封闭形式的公式。提出了有关体积全息元件特性的广泛参数研究。发现三元素级联可以表现出与二元素级联基本一样宽的光谱和场角带宽。这些带宽分别超过2300(ANGSTROM)和7(DEGREES);并通过提供的专门技术可以使这些翻倍。介绍了全息元件在成像中的应用,并讨论了近轴色厚度像差。

著录项

  • 作者

    STONE, THOMAS WILLIAM.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 372 p.
  • 总页数 372
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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