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Complex method for angular-spectral analysis of volume phase diffraction gratings recorded in photopolymers

机译:光聚合物中记录的体积相衍射光栅角光谱分析的复杂方法

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Photopolymer recording materials are nowadays widely used for recording of diffraction gratings and other diffraction elements. For obtaining the best performance of these diffraction gratings for desired applications, it is important to assess these gratings from many different perspectives. In this contribution, we present an experimental and characterization approach to an analysis of diffraction gratings recorded into photopolymer materials. This approach is able to provide a complex and very illustrative description of these gratings response and, with accordance to the theory, information about some important grating parameters, such as a spatial period, slant angle, etc., as well. This approach is based on the measurement of a grating response for a wide range of angles and wavelengths and then on the construction and subsequent analysis of maps in the angular-spectral plane. It is shown that the measurements are in a good agreement with the theoretical predictions based on either approximate (Kogelnik’s coupled wave theory) or rigorous (RCWA) techniques and that this approach provides complex and detailed characterization of the grating response which can be used for additional optimization or decision of applicability of measured sample gratings.
机译:如今,光聚合物记录材料被广泛用于记录衍射光栅和其他衍射元件。为了获得这些衍射光栅在所需应用中的最佳性能,从许多不同角度评估这些光栅很重要。在这项贡献中,我们提出了一种实验和表征方法,用于分析记录到光敏聚合物材料中的衍射光栅。这种方法能够提供这些光栅响应的复杂且非常说明性的描述,并且根据理论,还可以提供有关一些重要光栅参数(例如空间周期,倾斜角等)的信息。该方法基于对各种角度和波长的光栅响应的测量,然后基于在角光谱平面上的图的构造和后续分析。结果表明,测量结果与基于近似(Kogelnik耦合波理论)或严格(RCWA)技术的理论预测非常吻合,并且该方法可对光栅响应进行复杂而详细的表征,可用于其他优化或确定所测量样品光栅的适用性。

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