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Versatile simplified physical model for parallel aligned liquid crystal devices

机译:平行排列液晶装置的多功能简化物理模型

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Liquid crystal on silicon (LCoS) displays have become the most attractive microdisplays for all sort of spatial light modulation applications. Among the different LCoS technologies, parallel aligned LCoS (PA-LCoS) are especially interesting. They offer unique capabilities as spatial light modulators (SLM), since they enable phase-only modulation without coupled amplitude modulation, and with millions of addressable pixels. In this work we evaluate and demonstrate the various capabilities offered by a novel and simplified physical model for parallel aligned liquid crystal devices (PA-LC). thus also applicable to PA-LCoS microdisplays. The model provides the voltage dependent retardance values, necessary for spatial light modulation applications, for a very wide range of incidence angles and any wavelength in the visible. First, it needs to be calibrated through a reverse-engineering approach. In this calibration, the values obtained for two of the three parameters provide the correct values for important internal properties of these devices related with the birefringence, cell gap and director profile. Therefore, the proposed model can be used as a means to inspect internal physical properties of the cell. Last but not least the model is useful to simulate the retardance for novel PA-LC devices as a function of the LC compound and cell gap. Therefore, it is not only a reverse-engineering model but it also constitutes an analytical alternative to the usual numerical approaches for PA-LC devices design and construction.
机译:硅基液晶(LCoS)显示器已成为各种空间光调制应用中最吸引人的微型显示器。在不同的LCoS技术中,并行对齐的LCoS(PA-LCoS)尤其令人感兴趣。它们提供了作为空间光调制器(SLM)的独特功能,因为它们可以进行仅相位调制而无需耦合幅度调制,并且具有数百万个可寻址像素。在这项工作中,我们评估并演示了新颖,简化的物理模型为平行排列液晶设备(PA-LC)提供的各种功能。因此也适用于PA-LCoS微型显示器。该模型为很大范围的入射角和可见光中的任何波长提供了空间光调制应用所需的依赖于电压的延迟值。首先,需要通过逆向工程方法对其进行校准。在此校准中,从三个参数中的两个参数获得的值可为这些设备的重要内部属性(与双折射,单元间隙和指向矢轮廓)相关的值提供正确的值。因此,提出的模型可以用作检查电池内部物理特性的手段。最后但并非最不重要的一点是,该模型可用于模拟新型PA-LC器件的延迟,该延迟是LC化合物和单元间隙的函数。因此,它不仅是逆向工程模型,而且还构成了用于PA-LC器件设计和构造的常规数值方法的分析替代方案。

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