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电场诱导微球在液晶各向同性和手性向列相中的输运。

Electric-field-induced transport of microspheres in the isotropic and chiral nematic phase of liquid crystals.

作者信息

Oh Jiyoung, Gleeson Helen F, Dierking Ingo

机构信息

School of Physics and Astronomy, University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom.

出版信息

Phys Rev E. 2017 Feb;95(2-1):022703. doi: 10.1103/PhysRevE.95.022703. Epub 2017 Feb 23.

Abstract

The application of an electric field to microspheres suspended in a liquid crystal causes particle translation in a plane perpendicular to the applied field direction. Depending on applied electric field amplitude and frequency, a wealth of different motion modes may be observed above a threshold, which can lead to linear, circular, or random particle trajectories. We present the stability diagram for these different translational modes of particles suspended in the isotropic and the chiral nematic phase of a liquid crystal and investigate the angular velocity, circular diameter, and linear velocity as a function of electric field amplitude and frequency. In the isotropic phase a narrow field amplitude-frequency regime is observed to exhibit circular particle motion whose angular velocity increases with applied electric field amplitude but is independent of applied frequency. The diameter of the circular trajectory decreases with field amplitude as well as frequency. In the cholesteric phase linear as well as circular particle motion is observed. The former exhibits an increasing velocity with field amplitude, while decreasing with frequency. For the latter, the angular velocity exhibits an increase with field amplitude and frequency. The rotational sense of the particles on a circular trajectory in the chiral nematic phase is independent of the helicity of the liquid crystalline structure, as is demonstrated by employing a cholesteric twist inversion compound.

摘要

对悬浮在液晶中的微球施加电场会导致粒子在垂直于外加电场方向的平面内平移。根据外加电场的幅度和频率,在阈值以上可以观察到大量不同的运动模式,这可能导致线性、圆形或随机的粒子轨迹。我们给出了悬浮在液晶各向同性相和手性向列相中的粒子的这些不同平移模式的稳定性图,并研究了角速度、圆直径和线速度与电场幅度和频率的函数关系。在各向同性相中,观察到一个窄的场幅度 - 频率区域呈现圆形粒子运动,其角速度随外加电场幅度增加,但与外加频率无关。圆形轨迹的直径随场幅度和频率减小。在胆甾相相中,观察到线性和圆形粒子运动。前者的速度随场幅度增加,而随频率减小。对于后者,角速度随场幅度和频率增加。通过使用胆甾型扭曲反转化合物证明,手性向列相中圆形轨迹上粒子的旋转方向与液晶结构的螺旋性无关。

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