Reichenstein M, Stark H, Stelzer J, Trebin H R
Institut für Theoretische und Angewandte Physik, Universität Stuttgart, Pfaffenwaldring 57, D-70550 Stuttgart, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Jan;65(1 Pt 1):011709. doi: 10.1103/PhysRevE.65.011709. Epub 2001 Dec 21.
We study dynamical processes in a multidomain (MD) structured nematic liquid crystal cell with a particular emphasis on the motion, creation, and annihilation of disclinations. In the MD cell right- and left-handed director helices alternate due to a special choice of the director pretilt angles at the surfaces. As a result, a net of twist disclinations occurs. We have implemented a numerical algorithm based on a pure rotational dynamics of the director field to monitor the motion of the defect lines during the switching process, i.e., when an electric voltage is applied to or removed from the cell. We demonstrate that the total light transmission vs time is not affected by the presence of the defects compared to a conventional twisted nematic cell. If the pretilt angles at the surfaces are sufficiently small, the twisting sense of one species of helices is reversed and a configuration free of defects occurs. On the other hand, for an applied voltage twist disclinations close to the surface have to exist. Therefore, defect lines are created or they annihilate during the switching process. We investigate these situations in detail and reveal the underlying mechanisms.
我们研究了多畴(MD)结构向列型液晶盒中的动力学过程,特别关注向错的运动、产生和湮灭。在MD盒中,由于表面处指向矢预倾角的特殊选择,右手和左手指向矢螺旋交替出现。结果,出现了扭曲向错网络。我们基于指向矢场的纯旋转动力学实现了一种数值算法,以监测切换过程中缺陷线的运动,即当向盒施加电压或从盒中移除电压时。我们证明,与传统扭曲向列型液晶盒相比,缺陷的存在不会影响总光透射率随时间的变化。如果表面处的预倾角足够小,一种螺旋的扭曲方向会反转,从而出现无缺陷的构型。另一方面,对于施加的电压,靠近表面必须存在扭曲向错。因此,在切换过程中会产生或湮灭缺陷线。我们详细研究了这些情况,并揭示了其潜在机制。