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Dependence of the Bragg condition on an external electric field for a polymeric photorefractive material

机译:布拉格条件对聚合物光折变材料的外部电场的依赖性

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We investigated the effect of an applied electric field on the Bragg condition of degenerate four-wave mixing in a polymeric photorefractive material with a low glass-transition temperature. For a polymeric photorefractive material the application of an external electric field as is necessary for photorefractivity leads to birefringence of the material by poling of the nonlinear optical chromophore. Because the propagation vectors of the pumping and reading beams inside the material are influenced by the refractive index of the material, the Bragg condition depends on the magnitude of the external field. Using an oriented gas model and the-coupled-mode theory, we numerically analyzed the Bragg-mismatch effect that causes a reduction in diffraction efficiency as a function of an external field. We present the boundary conditions for sample thickness and grating spacing for which the Bragg-mismatch effect must be taken into account. (C) 2003 Optical Society of America. [References: 19]
机译:我们研究了施加的电场对低玻璃化转变温度的聚合物光折变材料中简并四波混合的布拉格条件的影响。对于聚合物光折变材料,光非线性所必需的外部电场的施加通过非线性光学发色团的极化而导致材料的双折射。由于材料内部的泵浦光束和读取光束的传播矢量受材料折射率的影响,因此布拉格条件取决于外场的大小。使用定向气体模型和耦合模式理论,我们对布拉格不匹配效应进行了数值分析,该效应导致衍射效率随外场而降低。我们提出了必须考虑布拉格不匹配效应的样品厚度和光栅间距的边界条件。 (C)2003年美国眼镜学会。 [参考:19]

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