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All-optically controlled light valve assembled by photorefractive crystal and PDLC hybrid structure

机译:光折射晶体与PDLC混合结构组装的全光控光阀

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摘要

A light-valve device, assembled by Ru-doped Bi_(12)SiO_(20) (BSO) photoconductive substrate and polymer dispersed liquid crystal layer is proposed, in which all the processes are controlled by the near infrared light Laser beam illumination (Gaussian shape) on BSO:Ru crystal caused charge carriers generation, which migrate and form an inhomogeneous distribution and subsequent space charge field. This surface-localized electromagnetic field penetrates into the PDLC layer and modulate the orientation of the liquid crystals, mat caused reverse of the device initial opaque state to the highly transparent one. The proposed structure is simple and easy to fabricate, without requirements of ITO contacts and alignment layers and opens further possibilities for near-infrared applications.
机译:提出了一种光阀装置,该装置由掺Ru的Bi_(12)SiO_(20)(BSO)光电导衬底和聚合物分散的液晶层组成,其中所有过程均由近红外光控制。形状)在BSO:Ru晶体上引起电荷载流子的产生,这些电荷载流子迁移并形成不均匀的分布,随后形成空间电荷场。这种表面局部的电磁场会渗透到PDLC层中,并调节液晶的取向,从而导致器件的初始不透明状态反转为高度透明的状态。所提出的结构简单且易于制造,不需要ITO接触层和对准层,并为近红外应用打开了更多可能性。

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