作者单位
摘要
南方科技大学电子与电气工程系, 广东 深圳 518055
随机激光器达到阈值的方式并不是通过谐振腔,而是通过光子在增益随机散射介质中的多次散射带来的光学反馈实现的。将液晶用作散射介质,可以利用液晶易调控的特点,调整系统无序程度和染料分子的取向,使液晶随机激光器的激光阈值、强度、偏振等特性得到调控,由此可极大地拓宽随机激光器的应用范围。系统介绍了液晶随机激光器的工作原理,并分别介绍了向列相、胆甾相、蓝相和等离激元增强液晶随机激光的近期研究进展。希望能为该领域的初学者提供基础知识,同时为有经验的研究人员跟踪最新的研究进展提供重要参考。
激光器 随机激光 液晶 多重散射 漫散射 
中国激光
2021, 48(12): 1201006
Author Affiliations
Abstract
1 School of Sciences, Hebei University of Technology, Tianjin 300401, China
2 School of Physical Science and Technology, Southwest University, Chongqing 400715, China
3 Hebei Jiya Electronics Co., Ltd., Shijiazhuang 050071, China
4 Hebei Provincial Research Center of LCD Engineering Technology, Shijiazhuang 050071, China
Image sticking in liquid crystal display (LCD) is related to the residual direct current (DC) voltage (RDCV) on the cell and the dynamic response of the liquid crystal materials. According to the capacitance change of the liquid crystal cell under the DC bias, the saturated RDCV (SRDCV) can be obtained. The response time can be obtained by testing the optical dynamic response of the liquid crystal cell, thereby evaluating the image sticking problem. Based on this, the image sticking of vertical aligned nematic (VAN) LCD (VAN-LCD) with different cell thicknesses (3.8 μm and 11.5 μm) and different concentrations of γ-Fe2O3 nanoparticles (0.017 wt.%, 0.034 wt.%, 0.051 wt.%, 0.068 wt.%, 0.136 wt.%, 0.204 wt.%, and 0.272 wt.%) was evaluated, and the effect of nano-doping was analyzed. It is found that the SRDCV and response time decrease firstly and then increase with the increase of the doping concentration of γ-Fe2O3 nanoparticles in the VAN cell. When the doping concentration is 0.034 wt.%, the γ-Fe2O3 nanoparticles can adsorb most of the free impurity ions in liquid crystal materials, resulting in 70% reduction in the SRDCV, 8.11% decrease in the decay time, and 15.49% reduction in the rise time. The results show that the doping of γ-Fe2O3 nanoparticles can effectively improve the image sticking of VAN-LCD and provide useful guidance for improving the display quality.
nanoparticles doping image sticking SRDCV response time VAN-LCD 
Chinese Optics Letters
2020, 18(3): 033501

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