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Study on a lateral-electrical-field pixel architecture for FLC spatial light modulator with continuously tunable grayscales

机译:具有连续可调灰度的FLC空间光调制器的横向电场像素架构研究

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A novel type of ferroelectric liquid crystal (FLC) pixel structure, in which a lateral electrical field is applied between slit-type electrodes, is proposed for ferroelectric spatial light modulator (SLM) in this brief. The novel FLC pixel architecture driven by a DRAM circuit is investigated with varied external fields, and its electrooptical property is shown as U-type curves, which implies the optical output is tunable by the applied lateral field. A numerical analysis, based on the continuum theory, corresponds well with the experiments and shows that unlike the in-plane switching process in nematic liquid crystals, the FLC molecules are rotated along their cone surface by external fields with a result of a continuously varied optical output, which promises this new pixel architecture for a ferroelectrical display with continuously tunable grayscales.
机译:在此简要介绍了一种新型的铁电液晶(FLC)像素结构,其中在狭缝型电极之间施加了横向电场,用于铁电空间光调制器(SLM)。研究了由DRAM电路驱动的新颖FLC像素体系结构在各种外部场的情况下的表现,其电光特性显示为U型曲线,这表明光输出可通过施加的横向场进行调节。基于连续介质理论的数值分析与实验非常吻合,表明与向列型液晶的面内切换过程不同,FLC分子通过外场沿其锥面旋转,从而产生连续变化的光学输出,这有望为具有连续可调灰度的铁电显示器提供这种新的像素架构。

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