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High-resolution photorefractive gratings in nematic liquid crystals sandwiched with photoconductive polymer film

机译:向列型液晶中的高分辨率光折变光栅,中间夹有光电导聚合物膜

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摘要

Photorefractive gratings with high grating resolution were observed in the 20 μm thick low-molar-mass nematic liquid crystal (NLC) cell with a separate photoconductive (PC) poly(N-vinylcarbazole) layer. An orientational grating with a grating spacing of 1.9 μm was produced. It is believed that a space-charge field with small fringe spacing forms in the PC layer and its evanescent component penetrates into the NLC layer. The penetrated evanescent field drives the NLC to reorient, and consequently the orientational grating forms. The model indicates that the modulated field exists in several hundred nanometers near the surface, and thus the orientational grating is not full of the NLC film, which is consistent with the observed phenomena of the multiple diffractions. Besides, asymmetric two-beam coupling of 11.2% was achieved for the grating with a grating spacing of 1.9 μm, and a net gain coefficient of larger than 62 cm~(-1) was obtained.
机译:在具有单独的光电导(PC)聚(N-乙烯基咔唑)层的20μm厚的低摩尔质量向列液晶(NLC)单元中,观察到具有高光栅分辨率的光折变光栅。产生具有1.9μm的光栅间距的定向光栅。据信在PC层中形成了具有小的边缘间隔的空间电荷场,并且其消逝成分渗透到NLC层中。穿透的渐逝场驱动NLC重新定向,并因此形成定向光栅。该模型表明调制场存在于表面附近几百纳米处,因此定向光栅未充满NLC膜,这与观察到的多次衍射现象一致。此外,光栅间距为1.9μm的光栅实现了11.2%的不对称两光束耦合,并获得了大于62 cm〜(-1)的净增益系数。

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