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Optimization of Diffraction Efficiency and Gain for Two-Wave Mixing in Cubic (111)-Cut Photorefractive Piezocrystals

机译:立方(111)切割光折变压电晶体中两波混合的衍射效率和增益的优化

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The dependence of the diffraction efficiency of holograms and the effective gain of the signal wave on the polarization and orientation angles is investigated for two-wave mixing in trans-mission geometry in cubic (111)-cut photorefractive piezocrystals (classes 23 and 43 m). It is shown theoretically and experimentally that in 2.1 mm thick BSO crystals (class 23) the piezoelectric effect leads to an increase of the diffraction efficiency by 70 percent and of the gain by 30 percent for certain values of the polarization and orientation angles. Without the piezoelectric effect the diffraction efficiency does not depend on polarization and orientation angles in both optically active (BSO) and optically inactive (GaAs) crystals, whereas the effective gain depends on polarization and orientation angles while its maximum value remains constant. It is found that for thickness of BSO crystal 8.2 mm the diffraction efficiency and the effective gain do not depend on polarization of reading light. For the first time the experimental dependence of maximum diffraction efficiency of hologram in (111)-cut BSO crystal on the Orientation angle theta is found. The results of the experiment confirm Correctness of chosen physical model of the diffraction.
机译:在立方(111)切割光折变压电晶体(23和43 m类)的透射几何中研究了两波混合时全息图的衍射效率和信号波的有效增益对偏振和取向角的依赖性。 。从理论上和实验上表明,对于某些偏振和取向角值,在2.1毫米厚的BSO晶体(第23类)中,压电效应导致衍射效率提高70%,增益提高30%。没有压电效应,衍射效率并不取决于光学活性(BSO)和光学惰性(GaAs)晶体中的偏振和取向角,而有效增益取决于偏振和取向角,而最大值却保持恒定。发现对于8.2mm的BSO晶体的厚度,衍射效率和有效增益不取决于读取光的偏振。首次发现(111)切割BSO晶体中全息图最大衍射效率与取向角θ的实验关系。实验结果证实了所选择的衍射物理模型的正确性。

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