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聚合物稳定垂直取向液晶盒的切换。

Switching of polymer-stabilized vertical alignment liquid crystal cell.

作者信息

Huang Chi-Yen, Jhuang Wen-Yi, Hsieh Chia-Ting

机构信息

Graduate Institute of Photonics and Department of Physics, National Changhua University of Education, Changhua, Taiwan, 500, Republic of China.

出版信息

Opt Express. 2008 Mar 17;16(6):3859-64. doi: 10.1364/oe.16.003859.

Abstract

This work investigates the switching characteristics of the polymer-stabilized vertical alignment (VA) liquid crystal (LC) cell. The experimental results reveal that the fall time of the cell declines as the monomer concentration increases because the vertically-aligned polymer networks accelerate the relaxation of the LC molecules. Furthermore, the formed polymer networks impede the growth and annihilation of LC defects, suppressing the optical bounce in the time dependent transmittance curve of the cell when the voltage is applied to the cell, substantially reducing the rise time of the cell. A step-voltage driving scheme is demonstrated to eliminate completely the optical bounce and hence improve further the rise time of the VA LC cell. The rise times of the pristine and the polymer-stabilized VA LC cells under the step-voltage driving scheme are less than 50% of those under the conventional driving scheme.

摘要

这项工作研究了聚合物稳定垂直取向(VA)液晶(LC)盒的开关特性。实验结果表明,随着单体浓度的增加,盒的下降时间缩短,这是因为垂直取向的聚合物网络加速了液晶分子的弛豫。此外,形成的聚合物网络阻碍了液晶缺陷的生长和湮灭,在向盒施加电压时抑制了盒的时间相关透过率曲线中的光学反弹,大幅降低了盒的上升时间。实验证明了一种阶跃电压驱动方案可完全消除光学反弹,从而进一步改善VA液晶盒的上升时间。在阶跃电压驱动方案下,原始VA液晶盒和聚合物稳定VA液晶盒的上升时间不到传统驱动方案下上升时间的50%。

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