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扭曲向列型液晶显示器中的扩展相位调制深度

Extended phase modulation depth in twisted nematic liquid crystal displays.

作者信息

Luis Martínez José, Moreno Ignacio, Davis Jeffrey A, Hernandez Travis J, McAuley Kevin P

机构信息

Departamento de Ciencia de Materiales, Óptica y Tecnología Electrónica, Universidad Miguel Hernández, 03202 Elche, Spain.

出版信息

Appl Opt. 2010 Oct 20;49(30):5929-37. doi: 10.1364/AO.49.005929.

Abstract

We show how the phase modulation depth in twisted nematic liquid crystal displays (TNLCDs) can be increased dramatically by selecting a polarization configuration with a reduced mean intensity transmission. This phenomenon, which we have validated with various devices, is shown here for a device that presents a phase-only modulation only slightly over π radians in our classical rotated eigenvector configuration, but it is capable of producing close to a 2π phase depth for a configuration with 5% mean intensity transmission. A quantitative explanation is presented by means of a phasor analysis of the TNLCD eigenvector projections over input and output polarization states. The proposed technique can be a very useful solution in modern TNLCDs that have a very thin liquid crystal layer and a reduced maximum achievable phase modulation.

摘要

我们展示了如何通过选择具有降低平均强度透射率的偏振配置,显著提高扭曲向列型液晶显示器(TNLCD)中的相位调制深度。我们已在各种设备上验证了这一现象,在此展示的是一个在经典旋转本征向量配置中仅呈现略超过π弧度的纯相位调制的设备,但对于平均强度透射率为5%的配置,它能够产生接近2π的相位深度。通过对TNLCD本征向量在输入和输出偏振态上的投影进行相量分析,给出了定量解释。所提出的技术对于具有非常薄的液晶层和降低的最大可实现相位调制的现代TNLCD来说,可能是一个非常有用的解决方案。

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