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Influence of acoustic field structure on polarization characteristics of acousto-optic interaction in crystals

机译:声场结构对晶体中声光相互作用的偏振特性的影响

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Influence of acoustic field structure on polarization characteristics of acousto-optic interaction is investigated. It is shown that inhomogeneity of acoustic field and mechanism of ultrasound excitation causes changes in values of acousto-optic figure of merit for ordinary and extraordinary light beams in comparison with theoretic values. The theoretic values were derived under assumption that acoustic wave is homogeneous. Experimental analysis was carried out in acousto-optic cell based on lithium niobate crystal where the acoustic wave propagates at the angle 13 degrees to Z axis of the crystal. We used three different methods of ultrasound generation in the crystal: by means of external piezotransducer, by interdigital transducer and by two sets of electrodes placed on top of the crystal surface. In the latter case, the first pair of the electrodes was directed along X crystal axis, while the second pair of the electrodes was directed orthogonally to X crystal axis and the direction of ultrasound. Obtained values for diffraction efficiencies for ordinary and extraordinary polarized optical beams were qualitatively different which may be caused by spatial inhomogeneity of the generated acoustic waves in the crystal. Structure of acoustic field generated by these sets of electrodes was examined by laser probing. We performed the analysis of the acoustic field intensity using acousto-optic method. A relation of diffraction efficiencies for ordinary and extraordinary light waves was measured during each iteration of the laser probing.
机译:研究了声场结构对声光相互作用的偏振特性的影响。结果表明,与理论值相比,声场的声场和超声激励机制导致普通和非凡光束的声光图的值变化。在假设声波是均匀的假设下得出的理论值。在基于铌酸锂晶体的声光电池中进行实验分析,其中声波以晶体的角度13度传播到晶体的晶片。我们在晶体中使用了三种不同的超声发电方法:通过外部压电转换器,通过叉指传感器和晶体表面上的两组电极。在后一种情况下,第一对电极沿X晶体轴引导,而第二对电极被垂直于X晶体轴和超声的方向引导。对于普通和非凡的偏振光束的衍射效率的获得值与晶体中产生的声波的空间不均匀性引起的定性不同。通过激光探测检查由这些电极组产生的声场的结构。我们使用声光方法进行了对声场强度的分析。在激光探测的每次迭代期间测量普通和非凡光波的衍射效率的关系。

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