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电场作用下活性向列相液晶的流动模式与缺陷动力学

Flow patterns and defect dynamics of active nematic liquid crystals under an electric field.

作者信息

Kinoshita Yutaka, Uchida Nariya

机构信息

Department of Physics, Tohoku University, Sendai 980-8578, Japan.

出版信息

Phys Rev E. 2023 Jul;108(1-1):014605. doi: 10.1103/PhysRevE.108.014605.

Abstract

The effects of an electric field on the flow patterns and defect dynamics of two-dimensional active nematic liquid crystals are numerically investigated. We found that field-induced director reorientation causes anisotropic active turbulence characterized by enhanced flow perpendicular to the electric field. The average flow speed and its anisotropy are maximized at an intermediate field strength. Topological defects in the anisotropic active turbulence are localized and show characteristic dynamics with simultaneous creation of two pairs of defects. A laning state characterized by stripe domains with alternating flow directions is found at a larger field strength near the transition to the uniformly aligned state. We obtained periodic oscillations between the laning state and active turbulence, which resembles an experimental observation of active nematics subject to anisotropic friction.

摘要

数值研究了电场对二维活性向列型液晶流动模式和缺陷动力学的影响。我们发现,场致指向矢重取向会导致各向异性的活性湍流,其特征是垂直于电场方向的流动增强。平均流速及其各向异性在中等场强下达到最大值。各向异性活性湍流中的拓扑缺陷是局部化的,并呈现出特征动力学,同时产生两对缺陷。在接近均匀排列状态转变的较大场强下,发现了一种以具有交替流动方向的条纹域为特征的条纹状态。我们获得了条纹状态和活性湍流之间的周期性振荡,这类似于对受各向异性摩擦作用的活性向列相的实验观察。

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