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用于视觉显示应用的全息光学元件。

Holographic optical element for visual display applications.

作者信息

McCauley D G, Simpson C E, Murbach W J

出版信息

Appl Opt. 1973 Feb 1;12(2):232-42. doi: 10.1364/AO.12.000232.

Abstract

Off-axis and off-bisector reflection-type holographic visual display elements have been recorded in dichromated gelatin deposited on planar or spherical shell substrates of glass or Plexiglas. A procedure for bonding gelatin to Plexiglas is given. Holographic elements are recorded at the argon wavelength of 514.5 nm and reconstructed with spectral lines from a low pressure mercury arc lamp. Measured image characteristics for a flat substrate hologram agree with ray-tracing calculations. A swelling of the gelatin by approximately 6.6% after processing does not perceptibly affect the dispersion, astigmatism, or distortion in the image, that is, the grating equation depends on the spacing between the fringes on the surface of the gelatin and is not affected by the swelling or shrinking. However, the Bragg equation depends on the distance normal to the fringe planes and is affected by thickness changes of the gelatin. Therefore, this thickness change is taken as an independent parameter and used to adjust the wavelength for maximum diffraction efficiency, without affecting the image angle. Data reveal a near linear relationship between the dichromate concentration of 0.5-10% used to photosensitive the gelatin and the display wavelength of maximum diffraction efficiency. Lateral dispersion is 0.12 +/- 0.01 degrees / nanometer for both planar and spherical shell substrate elements recorded in quite similar geometry, but their astigmatisms are not alike.

摘要

离轴和离平分线反射型全息视觉显示元件已记录在沉积于玻璃或有机玻璃平面或球形壳基板上的重铬酸盐明胶中。给出了将明胶粘结到有机玻璃上的方法。全息元件在514.5nm的氩波长下记录,并用低压汞弧灯的光谱线重建。平面基板全息图的测量图像特性与光线追踪计算结果相符。处理后明胶膨胀约6.6%,但对图像中的色散、像散或畸变没有明显影响,即光栅方程取决于明胶表面条纹之间的间距,不受膨胀或收缩的影响。然而,布拉格方程取决于垂直于条纹平面的距离,并受明胶厚度变化的影响。因此,将这种厚度变化作为一个独立参数,用于调整波长以获得最大衍射效率,而不影响图像角度。数据显示,用于使明胶感光的0.5 - 10%的重铬酸盐浓度与最大衍射效率的显示波长之间存在近似线性关系。对于以非常相似的几何形状记录的平面和球形壳基板元件,横向色散均为0.12 +/- 0.01度/纳米,但它们的像散不同。

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