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Higher diffraction order images in photorefractive liquid crystal polymer composite

机译:光折变液晶聚合物复合材料中的高衍射级图像

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About forty years ago, Ashkin found that the refractive index was changed when laser transmits some materials, then photorefractive(PR) phenomenon was found. During the past four decades, photorefractive nonlinear optics has received great attention due to its real-time operation, high sensitivity, and high holographic storage capacity. The interbeam angle between signal and reference beam usually is large than ten degrees when people storage information, so we can use fundamental photorefractive grating and avoid the influence of higher-order diffraction. However, higher-order diffraction can be used to realize image processing. It has not been well studied because higher-order diffraction images are usually blurry for crystal. With research expanding, photorefractive polymer materials are being paid much attention because of the properties of easy processing, fast response and material flexibility. In this paper, we firstly report some novel photorefractive higher-order diffraction phenomena of polymer material (PVK:5CB:C_(60))at small interbeam angle. The photorefractive composite consists of polymer poly[N-vinylcarbazole](PVK)doped with 4, 4'-n-pentylcyanobiphenyl (5CB) and C_(60). The weight ratio is 55.45%:44.45%:0.10%(PVK:5CB:C_(60)). The higher-order diffraction images are clear. The experiments testify the feasibility of optical image processing. In two-wave coupling experiments, signal beam is interfered with a mutually coherent reference beam within composites. Results are given respectively when signal beam was focused behind the composites, in front of the composites, in the composites. Higher diffraction order images are amplificatory or inverse. A theory of higher diffraction order images properties in photorefractive liquid crystal polymer composites has been developed. The theory is in good agreement with experimental work
机译:大约40年前,Ashkin发现当激光透射某些材料时折射率发生了变化,然后发现了光折射(PR)现象。在过去的四十年中,光折射非线性光学器件由于其实时操作,高灵敏度和高全息存储能力而备受关注。当人们存储信息时,信号与参考光束之间的光束夹角通常大于十度,因此我们可以使用基本的光折射光栅,避免高阶衍射的影响。但是,可以使用更高阶的衍射来实现图像处理。由于高阶衍射图像通常对于晶体是模糊的,因此尚未进行充分的研究。随着研究的扩展,光折变聚合物材料因其易于加工,响应速度快和材料柔韧性而备受关注。在本文中,我们首先报道了在小光束角下聚合物材料(PVK:5CB:C_(60))的一些新颖的光折变高阶衍射现象。该光折变复合物由掺杂有4、4'-正戊基氰基联苯(5CB)和C_(60)的聚合物聚[N-乙烯基咔唑](PVK)组成。重量比为55.45%:44.45%:0.10%(PVK:5CB:C_(60))。高阶衍射图像清晰。实验证明了光学图像处理的可行性。在两波耦合实验中,信号束受到复合材料中相互相干的参考束的干扰。当信号束聚焦在复合材料后面,复合材料前面,复合材料中时,分别给出结果。较高衍射级的图像是放大图像或反图像。已经开发了光折射液晶聚合物复合材料中较高衍射级图像性质的理论。该理论与实验工作非常吻合

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