标题: | 离子电荷效应对液晶盒物理特性之影响 Ion-Charge Effects on the Physical Properties of Liquid Crystal Cells |
作者: | 陈伯纶 Po-Lun Chen 王淑霞 Shu-Hsia Chen 光电工程学系 |
关键字: | 离子电荷效应;液晶;弹性自由能;义琼斯矩阵法;光学特性;灰阶偏移;电容;影像残留;ion-charge effects;liquid crystal;elastic free energies;Extended Jones matrix method;optical behavior;gray level shift;capacitance;image-sticking effect |
公开日期: | 1999 |
摘要: | 离子电荷效应对于液晶盒物理特性的影响, 鲜有文献做有系统的归纳探讨。各种较简易的模型被提出以解释各别的观察现象, 但各模型却不能有效的对应。本论文先就不同的离子电荷机制、模型、量测方式检讨起, 然后针对现有的文献所提模型不足以解释但又和离子电荷效应有关的一些观察现象做讨论。 首先, 针对时变的光学特性讨论。建立了一套结合液晶弹性自由能、外加电场自由能和离子电荷运动方程的液晶指向矢动态数值分析工具, 再配合广义琼斯矩阵法 (Extended Jones matrix method), 解释了传统的电双层模型和电阻-电容等效电路模型所不能说明的低频操作下扭转向列式 (twisted nematic) 液晶盒的光学反涟波 (reversed ripple) 现象。此外, 亦讨论离子电荷效应对于液晶盒的光学灰阶偏移 (gray level shift) 的影响。由实验得知液晶盒若含有适当的离子电荷密度, 在较高频率电压驱动下, 会使其光学灰阶朝过反应于外加电压的状态偏移。此现象和直流遮避效应(DC screening effect)的驱势相反, 亦用数值分析探讨之。 其次, 针对时变的电容特性讨论。发现了含有较多离子电荷的液晶盒, 在较高的直流电压作用下, 所产生的异常电容现象。提出了一个通用的液晶盒电容模型, 说明了液晶盒电容除了传统考虑的液晶分子诱发极化 (induced polarization) 项之外, 还需加入一项由空间电荷 (space charge) 对交流电容侦测电压微分所造成的电容项。 最后, 针对于薄膜电晶体液晶显示器模组 (thin film transistor liquid crystal display module) 的影像残留 (image-sticking effect) 评估, 提出一个有效的光学量测方法, 其克服了传统方法之不易使用仪器量测模组影像残留的问题。 Influence of ion-charge effects on the physical properties of liquid crystal cells is seldom discussed systematically. Many simpler models were proposed for the explanation of specific observed phenomena, while these models are not well equivalent effectively. The dissertation starts with the discussion of ionic charge mechanisms, models, and measurements. And then, I aim to some phenomena involved the ion-charge effects that can not be explained by the conventional models. First, time dependent optical characteristics are studied. I establish a numerical analysis tool for calculating the orientation of liquid crystals. The theory combines the motion equations of ionic charges with the elastic and electric free energies. Furthermore, the extended Jones matrix method is carried out for analyzing the optical behavior of a liquid crystal cell. It gives results for explaining the reversed ripple phenomenon of a twisted nematic liquid crystal cell driven at low frequency. The reversed ripple can not be explained by both of the electric double layer and the equivalent RC-circuit models. In addition, the influence of ion-charge effects on the gray level shift of a liquid crystal cell is also discussed. From my experiment, it is suggested that a reversed gray level shift occurs when a LC cell is doped with a proper concentration of ionic charges. The effect, on contrary to the DC screening effect, promotes liquid crystals to over respond to the applied voltage. Second, time dependent capacitance characteristics are studied. I found that a liquid crystal cell containing large amounts of ionic charges under a DC drive results in anomalous capacitance behaviors. I proposed a general capacitance theory of liquid crystal cells. The capacitance of a liquid crystal cell consists of the terms from the induced polarization and the derivative of space charge with respect to the AC voltage. Finally, I propose an effective method for evaluating the image-sticking effect of a thin film transistor liquid crystal display module by directly measuring its time evolution of transmission. The method can overcome the problem in conventional methods to which the instrumental measurement is difficult to be applied. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT880614015 http://hdl.handle.net/11536/66347 |
显示于类别: | Thesis |