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Second-harmonic diffraction from holographic volume grating

机译:全息体光栅的二次谐波衍射

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The full polarization property of holographic volume-grating enhanced second-harmonic diffraction (SHD) is investigated theoretically. The nonlinear coefficient is derived from a simple atomic model of the material. By using a simple volume-grating model, the SHD fields and Mueller matrices are first derived. The SHD phase-mismatching effect for a thick sample is analytically investigated. This theory is justified by fitting with published experimental SHD data of thin-film samples. The SHD of an existing polymethyl methacrylate (PMMA) holographic 2-mm-thick volume-grating sample is investigated. This sample has two strong coupling linear diffraction peaks and five SHD peaks. The splitting of SHD peaks is due to the phase-mismatching effect. The detector sensitivity and laser power needed to measure these peak signals are quantitatively estimated. (c) 2006 Optical Society of America.
机译:理论上研究了全息体积光栅增强的二次谐波衍射(SHD)的全偏振特性。非线性系数是从材料的简单原子模型得出的。通过使用简单的体栅模型,首先得出SHD场和Mueller矩阵。分析了厚样品的SHD相位失配效应。通过与已发布的薄膜样品的实验SHD数据相吻合,可以证明该理论是正确的。研究了现有的2毫米厚的聚甲基丙烯酸甲酯(PMMA)全息体积光栅样品的SHD。该样品具有两个强耦合线性衍射峰和五个SHD峰。 SHD峰的分裂是由于相位不匹配的影响。定量估计了测量这些峰值信号所需的检测器灵敏度和激光功率。 (c)2006年美国眼镜学会。

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