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The role of surface charge field in two-beam coupling in liquid crystal cells with photoconducting polymer layers

机译:表面电荷场在具有光导聚合物层的液晶单元中的双光束耦合中的作用

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摘要

In liquid crystal cells with photoconductive poly(N-vinlyl carbazole) polymer layers, an external dc field can be completely screened by surface charge layers that develop at the liquid crystal–polymer interface. Under spatially modulated illumination, surface charge layers can be discharged in bright areas and lead to reorientation and spatially modulated Freedericksz transition. As a result, an asymmetric energy exchange in the photorefractive two-beam coupling process can take place. We propose a model to explain the origin of reorientation and phase shift in the two-beam coupling process, based on the profile and tilt of the refractive index grating. We also show that cells with just one photoconducting layer are more efficient than a typical design with two layers.
机译:在具有光电导性聚(N-乙烯基咔唑)聚合物层的液晶单元中,外部直流电场可以通过在液晶-聚合物界面处形成的表面电荷层完全屏蔽。在空间调制的照明下,表面电荷层可以在明亮的区域放电,并导致重新定向和空间调制的Freedericksz跃迁。结果,在光折射两束耦合过程中会发生不对称的能量交换。我们基于折射率光栅的轮廓和倾斜度,提出了一个模型来解释两光束耦合过程中重新定向和相移的起源。我们还表明,仅具有一个光电导层的电池比具有两个导电层的典型设计的效率更高。

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