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SF-FDTD analysis of a predictive physical model for parallel aligned liquid crystal devices

机译:平行取向液晶装置的预测物理模型的SF-FDTD分析

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摘要

Recently we demonstrated a novel and simplified model enabling to calculate the voltage dependent retardance provided by parallel aligned liquid crystal devices (PA-LCoS) for a very wide range of incidence angles and any wavelength in the visible. To our knowledge it represents the most simplified approach still showing predictive capability. Deeper insight into the physics behind the simplified model is necessary to understand if the parameters in the model are physically meaningful. Since the PA-LCoS is a black-box where we do not have information about the physical parameters of the device, we cannot perform this kind of analysis using the experimental retardance measurements. In this work we develop realistic simulations for the non-linear tilt of the liquid crystal director across the thickness of the liquid crystal layer in the PA devices. We consider these profiles to have a sine-like shape, which is a good approximation for typical ranges of applied voltage in commercial PA-LCoS microdisplays. For these simulations we develop a rigorous method based on the split-field finite difference time domain (SF-FDTD) technique which provides realistic retardance values. These values are used as the experimental measurements to which the simplified model is fitted. From this analysis we learn that the simplified model is very robust, providing unambiguous solutions when fitting its parameters. We also learn that two of the parameters in the model are physically meaningful, proving a useful reverse-engineering approach, with predictive capability, to probe into internal characteristics of the PA-LCoS device.
机译:最近,我们展示了一种新颖且简化的模型,该模型能够针对非常宽的入射角范围和可见光中的任何波长,计算由平行排列的液晶设备(PA-LCoS)提供的电压相关延迟。据我们所知,它代表了仍显示预测能力的最简化方法。为了了解模型中的参数在物理上是否有意义,有必要对简化模型背后的物理学有更深入的了解。由于PA-LCoS是一个黑匣子,在这里我们没有关于设备物理参数的信息,因此我们无法使用实验性延迟测量来执行这种分析。在这项工作中,我们开发了针对PA装置中液晶指向矢在液晶层厚度上的非线性倾斜的逼真的模拟。我们认为这些轮廓具有正弦形形状,这是商用PA-LCoS微型显示器中典型的施加电压范围的良好近似值。对于这些仿真,我们开发了一种基于分裂场有限差分时域(SF-FDTD)技术的严格方法,该方法可提供实际的延迟值。这些值用作简化模型所适合的实验测量值。从此分析中,我们了解到简化模型非常健壮,在拟合其参数时可提供明确的解决方案。我们还了解到该模型中的两个参数在物理上是有意义的,从而证明了一种具有预测能力的有用的逆向工程方法可以探查PA-LCoS设备的内部特性。

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