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Photoconductive polymer-liquid crystal systems for efficient beam control and amplification

机译:用于高效光束控制和放大的光电导聚合物 - 液晶系统

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We report on reorientation and two-beam coupling process in liquid crystal cells with different aligning polymer layers. Polymers such as poly(N-vinyl carbazole), pure and doped with fullerenes as well as standard polyimide layers were considered. Electric field distribution inside a liquid crystal cell was modelled and different penetration depths into the liquid crystal bulk were calculated depending on the modulation of surface electric field. The characteristics features of reorientation process were studied via measurements of capacitance with an increasing DC field. The evidence of strong screening was found in cells with photoconducting polymers, as well as in those with thicker polyimide layers. Surface screening layers could be discharged by illuminating a cell with light to induce selective reorientation of a liquid crystal director.
机译:我们在液晶细胞中报告具有不同对准聚合物层的液晶细胞中的重新定位和双梁耦合过程。认为聚合物如聚(N-乙烯基咔唑),纯净掺杂富勒烯以及标准的聚酰亚胺层。根据表面电场的调制来计算液晶电池内部的电场分布,并根据表面电场的调制来计算进入液晶体积的不同渗透深度。利用增加的DC场测量电容测量研究了Reorientation过程的特征。在具有光电导聚合物的细胞中发现强筛选的证据,以及聚酰亚胺层较厚的细胞中。可以通过用光照射电池来排出表面筛分层以诱导液晶导向器的选择性重新定位。

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