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Simulation and optimization of liquid crystal gratings with alternate twisted nematic and planar aligned regions

机译:具有交替扭曲向列和平面排列区域的液晶光栅的仿真和优化

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Electro-optical properties of liquid crystal (LC) gratings with alternate twisted nematic (TN) and planar aligned (PA) regions are simulated. Three typical steps are introduced: first, the LC director distributions of the two different regions are simulated. Then, the phase and amplitude of the emergent light in each region are calculated through Jones matrix. Based on this information, the voltage-dependent diffraction efficiency is achieved by Fourier transformation, finally. It gives an exact explanation for the mechanism of this kind of gratings. Experiments with optimized parameters are carried out through photopatterning. The trend of the measured voltage-dependent efficiency fits the simulation result very well. This method can be used to optimize the performance of LC gratings with alternate TN and PA regions, and exhibits great potential in the simulation of corresponding photonics and display applications.
机译:模拟具有交替扭曲向列(TN)和平面排列(PA)区域的液晶(LC)光栅的电光特性。介绍了三个典型步骤:首先,模拟了两个不同区域的LC指向矢分布。然后,通过琼斯矩阵计算每个区域出射光的相位和幅度。基于该信息,最终通过傅立叶变换获得电压相关的衍射效率。它为这种光栅的机理提供了精确的解释。通过光图案化进行了具有优化参数的实验。测得的电压相关效率的趋势非常符合仿真结果。该方法可用于优化具有交替TN和PA区域的LC光栅的性能,并且在模拟相应的光子学和显示应用中具有巨大的潜力。

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