Photo-alignment control of topological defects in nematic liquid-crystal cells

IF 3.9 4区 物理与天体物理 0 OPTICS Ukrainian Journal of Physical Optics Pub Date : 2021-01-01 DOI:10.3116/16091833/22/2/87/2021
P. Golub, M. Vasnetsov
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引用次数: 1

Abstract

. We report the experiments aimed at controlling the position of linear topological defect (disclination) in a so-called  -cell filled with a nematic liquid crystal sandwiched between circularly rubbed polyimide (Kapton) layer and photoaligning PVCN material oriented unidirectionally. To satisfy surface-alignment conditions, the director within this cell experiences a twist. The topological defect appears in a plane where the twist angle of the director becomes indeterminate (  90º). In an achiral liquid crystal, orientation of the disclination coincides with the alignment occurring on the unidirectionally oriented substrate. The idea of this work is to control the alignment direction on the substrate by a polarized ultraviolet light. Photo-induced director reorientation on the substrate changes the twist angle in the bulk and so varies the azimuthal angle of the disclination. We monitor reorientation of the disclination as a function of light-polarization angle and irradiation dose.
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向列液晶胞中拓扑缺陷的光对准控制
。我们报告了旨在控制线性拓扑缺陷(偏差)位置的实验,该实验在所谓的“ -细胞”中填充了一个向列液晶,夹在圆形摩擦聚酰亚胺(Kapton)层和单向光对准PVCN材料之间。为了满足表面对齐条件,该单元内的定向器经历一个扭转。拓扑缺陷出现在指导者扭转角度不确定的平面上(90º)。在非手性液晶中,偏斜的取向与发生在单向取向衬底上的取向一致。这项工作的思想是通过偏振光紫外光来控制基板上的对准方向。在基板上的光致定向改变了体的扭转角,从而改变了偏斜的方位角。我们监测了作为光偏振角和辐照剂量的函数的偏光取向的重新定位。
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来源期刊
CiteScore
9.90
自引率
0.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: “Ukrainian Journal of Physical Optics” contains original and review articles in the fields of crystal optics, piezo-, electro-, magneto- and acoustooptics, optical properties of solids and liquids in the course of phase transitions, nonlinear optics, holography, singular optics, laser physics, spectroscopy, biooptics, physical principles of operation of optoelectronic devices and systems, which need rapid publication. The journal was founded in 2000 by the Institute of Physical Optics of the Ministry of Education and Science of Ukraine.
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