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Angular directivity of diffracted wave in Bragg-mismatched readout of volume holographic gratings

机译:体积全息光栅的布拉格不匹配读数中衍射波的角指向性

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We investigated theoretically and experimentally angular directivity of a diffracted beam in volume holographic gratings. We measuredthe angular direction of the diffracted beam as a function of Bragg-angle deviation of the read beam and showed that the experimental result agrees well with the Ewald sphere vector model (ESVM). We also showed that the Kogelnik's coupled-wave theory (CWT) is correct in predicting the diffraction efficiency, but is incomplete in its description of the direction of the diffracted wave. We show that the ESVM and the CWT theories taken together produce a self-consistent mathematical model of wave propagation inside the gratings that is confirmed with experimental results. The proper model for the direction of the output beam as presented here is important in developing theoretical models of image propagation through thick gratings for holographic imaging and correlation applications.
机译:我们在体全息光栅中研究了衍射光束的理论和实验角度方向性。我们测量了衍射光束的角度方向与读取光束的布拉格角偏差的关系,结果表明,实验结果与Ewald球面向量模型(ESVM)吻合良好。我们还表明,Kogelnik的耦合波理论(CWT)在预测衍射效率方面是正确的,但在描述衍射波方向方面是不完整的。我们证明,将ESVM和CWT理论结合使用,可以产生一个自洽的光栅内部波传播数学模型,并得到了实验结果的证实。此处介绍的输出光束方向的正确模型对于开发用于全息成像和相关应用的通过厚光栅的图像传输的理论模型非常重要。

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