Electronics and Information Systems Department, Ghent University, Technologiepark Zwijnaarde 15, 9052 Ghent, Belgium.
Soft Matter. 2018 Sep 7;14(33):6892-6902. doi: 10.1039/c8sm01145a. Epub 2018 Aug 9.
The formation of nematic liquid crystal (LC) superstructures in cells with non-uniform photo-alignment at the confining substrates is studied experimentally and by simulations. An interference pattern of left- and right-handed circularly polarized light is used to define the alignment at both substrates separately, so that the alignment varies along the x-coordinate on one substrate and along the y-coordinate on the other substrate. The interplay between the complex surface alignment and the liquid crystalline soft matter leads to the formation of interesting 3D configurations. The periodic LC structures that are formed in the bulk of the cell are analyzed experimentally by polarizing optical microscopy (POM) for different applied voltages. In the region with strong photo-alignment at both substrates, a 2D LC polarization grating (PG) with a complex 3D director configuration is formed. Distinct periodic structures with different symmetry properties are observed in the regions with weak illumination at the top and/or bottom substrate. The director configuration in the different regions was successfully simulated with the help of finite element (FE) Q-tensor simulations. The agreement between the simulations and the experiments was verified by comparing the POM images with simulated results for the transmission between crossed polarizers.
在具有非均匀光取向限制衬底的细胞中,研究了向列液晶(LC)超结构的形成,实验和模拟都对此进行了研究。使用左右圆偏振光的干涉图案分别定义两个衬底上的取向,从而使取向在一个衬底上沿 x 坐标变化,在另一个衬底上沿 y 坐标变化。复杂的表面取向与液晶软物质之间的相互作用导致了有趣的 3D 结构的形成。通过偏光显微镜(POM)对不同外加电压下细胞体中形成的周期性 LC 结构进行了实验分析。在两个衬底上均具有强光取向的区域中,形成了具有复杂 3D 指向矢配置的 2D LC 偏振光栅(PG)。在顶部和/或底部衬底光照较弱的区域中观察到具有不同对称性质的独特周期性结构。借助有限元(FE)Q-张量模拟成功模拟了不同区域的指向矢配置。通过将 POM 图像与交叉偏振器之间的传输的模拟结果进行比较,验证了模拟与实验之间的一致性。