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Thermally and electrically switchable gratings based on polymer-ball-type polymer-dispersed liquid-crystal films

机译:基于聚合物球型聚合物分散液晶膜的热电切换光栅

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摘要

We focus on the fabrication and study of controllable holographic gratings based on azo-dye-doped and undoped polymer-ball-type polymer-dispersed liquid-crystal films. Experimental results indicate that the next step of photopolymerization of the sample with the illumination of Ar~(+) laser beams after UV curing causes a latent density grating to be recorded. This grating is formed by a selective secondary photopolymerization. Heating and applying a voltage change the structure of the liquid crystal and induce the appearance of the latent grating. Diffraction efficiencies versus temperature, voltage, and state of polarization are studied for both dye-doped and undoped cells and are found to be quite different. This discrepancy is attributable to the reorientation effect of liquid crystals through their interaction with the photo-induced adsorption of the doped dyes on the surface of polymer balls in the dye-doped cell.
机译:我们专注于基于偶氮染料掺杂和未掺杂的聚合物球型聚合物分散液晶薄膜的可控全息光栅的制造和研究。实验结果表明,在紫外光固化后,用Ar〜(+)激光束照射样品进行下一步的光致聚合将导致记录潜在的密度光栅。该光栅是通过选择性二次光聚合形成的。加热并施加电压会改变液晶的结构,并引起潜光栅的出现。研究了染料掺杂和未掺杂电池的衍射效率与温度,电压和极化状态的关系,发现两者之间存在很大差异。这种差异归因于液晶的重取向作用,这是由于液晶与掺杂染料的光在聚合物球表面的掺杂球上的光诱导吸附相互作用。

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