论文标题

染色液晶细胞的光学表征

Optical characterization of dyed liquid crystal cells

论文作者

Addai, Obeng Appiagyei, Xiao, Ruilin, Zheng, Xiaoyu, Palffy-Muhoray, Peter

论文摘要

宾客 - 宿主液晶显示屏首次提议于1968年提出,依靠控制溶解在列液晶宿主中的二分性染料的方向。用电场控制液晶和溶解染料的方向,可以控制细胞的透射率。了解染料和液晶混合物的光频率的介电特性对于客人宿主液晶器件的最佳设计至关重要。在这项工作中,通过遵守Kramers-Kronig关系的模型来描述液晶细胞中各个层的介电函数:用于吸收层的透明层和因果高斯振荡器模型的Sellmeier方程。我们提出了一种系统的方法,通过最大程度地减少近乎UV/VIS范围内的客人宿主宿主单元的测量透射光谱之间的平方差异和预测建模多层结构的透射率,来准确地对每层的介电响应进行建模。通过测量入射光极化平行和垂直于列表主管的透射率,我们可以单独表征单轴样品的两个主要介电函数。我们的结果表明,因果高斯振荡器模型可以准确地表征液晶中染料的介电功能。

The guest-host liquid crystal display, first proposed in 1968, relies on controlling the orientation of dichroic dyes dissolved in a nematic liquid crystal host. Controlling the orientation of the liquid crystal and of the dissolved dye with an electric field allows control of the transmittance of the cell. Knowing the dielectric properties at optical frequencies of the dye and liquid crystal mixtures is crucial for the optimal design of guest-host liquid crystal devices. In this work, the dielectric functions of various layers in liquid crystal cells are described by models obeying the Kramers-Kronig relations: the Sellmeier equation for transparent layers and causal Gaussian oscillator model for absorbing layers. We propose a systematic way to accurately model the dielectric response of each layer by minimizing the sum of squared differences between the measured transmittance spectrum of a guest-host cell in the near-UV/vis range and the prediction of the transmittance of the modeled multilayer structure. By measuring the transmittance for incident light polarized parallel and perpendicular to the nematic director allows us to separately characterize the two principal dielectric functions of the uniaxial sample. Our results show that the causal Gaussian oscillator model can accurately characterize the dielectric functions of dyes in liquid crystals.

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