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Temporal and spatial evolution of beam coupling in Bi_(12)SiO_(20) under an applied electric field in two wave mixing.

机译:两波混合中的施加电场下Bi_(12)SiO_(20)中梁耦合的时间和空间演变。

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Temporal and spatial evolution of beam coupling in two-wave mixing under an applied electric field was calculated numerically for bismuth silicon oxide. A new and powerful method to calculate the intensities of the two light beams interacting along the crystal during grating formation was developed. To accomplish this modeling the band transport model at both low and high modulation depths was solved to obtain the temporal evolution of the space charge field and the phase mismatch of photorefractive grating with regard to light illumination pattern. These quantities were used to calculate the coupling gain coefficients required to solve also numerically the coupling equations governing the energy exchange between the beams intensities traveling through the crystal. An unusual non-monotonous effect on time evolution of the intensities of light beam was observed. The intensities show an anomalous variation before to attain its steady state level.
机译:施加电场下两波混合中的梁耦合的时间和空间演化在数值上计算用于铋氧化碳。开发了一种新的和强大的方法来计算在光栅形成期间沿着晶体相互作用的两个光束的强度。为了实现这种建模,解决了低和高调制深度的频带传输模型,以获得空间电荷场的时间演变和关于光照明图案的光折射光栅的相位失配。这些数量用于计算在数值上求解的耦合增益系数,这些耦合方程在数值上求解通过晶体行进的光束强度之间的能量交换。观察到对时间延伸的不同时的非单调效果。强度在达到其稳态水平之前显示出异常变化。

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