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Ion Controlled Liquid Crystal Spatial Light Modulator

机译:离子控制液晶空间光调制器

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摘要

This work concerns the experimental study of potential possibility to use the ITO/5CB/Si/Al structures based on a low resistive silicon as liquid crystal spatial light modulator (LC SLM). It is shown, that in such type of structures there are at least two charge processes causes the opposite influence on electrooptic reaction of structure. First process is connected with ion charge accumulation at silicon surface that induces the formation of depleted surface layer in silicon by means of a field effect. Second one is due to leakage current through Si/liquid crystal interface that decreases a photosensitivity of structure. Because of sufficient large ion currents achieved in such a type of structure as well as charge accumulation the possibility exists to form the local variable area of high ion concentration in liquid crystal layer that can play a role of a "quasi"-electrode which enables to modulate a surface conductivity of silicon. Ion control of photosensitivity as well as dynamic selection of input image by the structure has been demonstrated.
机译:这项工作涉及使用基于低电阻硅的ITO / 5CB / Si / Al结构作为液晶空间光调制器(LC SLM)的潜在可能性的实验研究。结果表明,在这种类型的结构中,至少有两个电荷过程对结构的电光反应产生相反的影响。第一个过程与硅表面上的离子电荷积累有关,该离子电荷借助场效应在硅中诱导形成耗尽的表面层。第二个原因是由于通过硅/液晶界面的泄漏电流降低了结构的光敏性。由于在这种类型的结构中实现了足够大的离子电流以及电荷积累,因此存在在液晶层中形成高离子浓度的局部可变区域的可能性,该局部可变区域可以起到“准”电极的作用,从而能够调节硅的表面电导率。已经证明了该结构的光敏性离子控制以及输入图像的动态选择。

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