首页> 外文期刊>Revista mexicana de fisica >Optimization of the diffraction efficiency in non-uniform gratings in sillenite crystals (Bi12SiO20 and Bi12TiO2) considering the variation of fringe period, optical activity and polarization angles in a strong non-linear regime
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Optimization of the diffraction efficiency in non-uniform gratings in sillenite crystals (Bi12SiO20 and Bi12TiO2) considering the variation of fringe period, optical activity and polarization angles in a strong non-linear regime

机译:考虑边缘周期,光学活性和偏振角在强非线性条件下的变化,优化亚硅酸盐晶体(Bi12SiO20和Bi12TiO2)中非均匀光栅的衍射效率

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We included the non-uniformity of the grating and of the magnitude and phase of light modulation throughout the sample thickness to optimize the diffraction efficiency. The variation of fringe period, optical activity, birefringence, absorption of light, and polarization angle were considered. We studied strong nonlinear conditions and two crystal orientations one is with the grating vector parallel to the face [001] and the other is with the grating vector perpendicular to the same face. We included applied fields there is a complex relationship among all these parameters, and the prediction of the conditions for the optimum value of the diffraction efficiency is complicated. We report the optimal sample thickness for different situations, considering two wavelengths for reading: green (532 nm) and red (632 nm).
机译:我们在整个样品厚度中包括了光栅的不均匀性以及光调制的幅度和相位的不均匀性,以优化衍射效率。考虑了条纹周期,光学活性,双折射,光吸收和偏振角的变化。我们研究了强非线性条件和两种晶体取向,一种是光栅矢量平行于面[001],另一种是光栅矢量垂直于同一面。包括应用领域在内,所有这些参数之间都存在复杂的关系,并且衍射效率最佳值的条件预测也很复杂。我们报告了针对不同情况的最佳样品厚度,并考虑了两个读取波长:绿色(532 nm)和红色(632 nm)。

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