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首页> 外文期刊>Optical Materials Express >Electrically tunable prism grating based on a liquid crystal film with a photoconductive layer
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Electrically tunable prism grating based on a liquid crystal film with a photoconductive layer

机译:基于带有光电导层的液晶薄膜的电可调棱镜光栅

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摘要

This study is the first to investigate an optically addressed, electrically tunable prism grating based on homogeneously aligned liquid crystals (LCs) with a photoconductive layer. A conductivity-gradient electrode-like grating pattern of the polymer layer results in a spatially periodic gradient of the effective electric-field drop, producing a prism grating with a spatially periodic LC gradient reorientation. The asymmetric diffraction pattern can be adjusted by varying the dc voltage. The first-order diffraction efficiency is 64% at optimal conditions. The proposed prism grating exhibits extremely low diffraction noise in the off state, a high switching contrast inthe on–off state (~1000), simplicity of fabrication, and high controllability at a low voltage range (0 to 0.4 V/?m).
机译:这项研究是首次研究基于具有光导层的均匀排列的液晶(LC)的光学寻址电可调棱镜光栅。聚合物层的电导率梯度电极状光栅图案导致有效电场降的空间周期梯度,从而产生具有空间周期LC梯度重新定向的棱镜光栅。可以通过改变直流电压来调整不对称衍射图样。在最佳条件下,一阶衍射效率为64%。所提出的棱镜光栅在关闭状态下表现出极低的衍射噪声,在关闭状态下(〜1000)具有很高的开关对比度,制造简单,并且在低电压范围(0至0.4 V /?m)下具有很高的可控性。

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