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Predictive capability of average Stokes polarimetry for simulation of phase multilevel elements onto LCoS devices

机译:平均Stokes极化法在LCoS器件上模拟相多能级元素的预测能力

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摘要

Parallel-aligned (PA) liquid-crystal on silicon (LCoS) microdisplays are especially appealing in a wide range of spatial light modulation applications since they enable phase-only operation. Recently we proposed a novel polarimetric method, based on Stokes polarimetry, enabling the characterization of their linear retardance and the magnitude of their associated phase fluctuations or flicker, exhibited by many LCoS devices. In this work we apply the calibrated values obtained with this technique to show their capability to predict the performance of spatially varying phase multilevel elements displayed onto the PA-LCoS device. Specifically we address a series of multilevel phase blazed gratings. We analyze both their average diffraction efficiency ("static" analysis) and its associated time fluctuation ("dynamic" analysis). Two different electrical configuration files with different degrees of flicker are applied in order to evaluate the actual influence of flicker on the expected performance of the diffractive optical elements addressed. We obtain a good agreement between simulation and experiment, thus demonstrating the predictive capability of the calibration provided by the average Stokes polarimetric technique. Additionally, it is obtained that for electrical configurations with less than 30 degrees amplitude for the flicker retardance, they may not influence the performance of the blazed gratings. In general, we demonstrate that the influence of flicker greatly diminishes when the number of quantization levels in the optical element increases. (C) 2015 Optical Society of America
机译:硅上平行排列(PA)液晶(LCoS)微型显示器特别吸引了广泛的空间光调制应用,因为它们支持仅相位操作。最近,我们提出了一种基于斯托克斯极化法的新颖的极化方法,能够表征许多LCoS器件所表现出的线性延迟以及相关相位波动或闪烁的幅度。在这项工作中,我们应用通过该技术获得的校准值,以显示其预测显示在PA-LCoS设备上的空间变化相位多电平元件的性能的能力。具体来说,我们解决了一系列多级相位闪耀光栅。我们分析了它们的平均衍射效率(“静态”分析)及其相关的时间波动(“动态”分析)。应用两个具有不同闪烁度的不同电气配置文件,以评估闪烁对所解决的衍射光学元件的预期性能的实际影响。我们在仿真和实验之间获得了良好的一致性,从而证明了平均斯托克斯极化技术所提供的校准的预测能力。另外,获得的结果是,对于闪烁延迟,振幅小于30度的电气配置可能不会影响闪耀光栅的性能。通常,我们证明,当光学元件中的量化级数增加时,闪烁的影响会大大减小。 (C)2015年美国眼镜学会

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