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电驱动向列相液晶中胶体粒子的悬浮、提升及双向运动

Levitation, lift, and bidirectional motion of colloidal particles in an electrically driven nematic liquid crystal.

作者信息

Pishnyak O P, Tang S, Kelly J R, Shiyanovskii S V, Lavrentovich O D

机构信息

Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent State University, Kent, Ohio 44242, USA.

出版信息

Phys Rev Lett. 2007 Sep 21;99(12):127802. doi: 10.1103/PhysRevLett.99.127802.

Abstract

We study electric-field-induced dynamics of colloids in a nematic cell, experimentally and by computer simulations. Solid particles in the nematic bulk create director distortions of dipolar type. Elastic repulsion from the walls keeps the particles in the middle of cell. The ac electric field reorients the dipoles and lifts them to top or bottom, depending on dipole orientation. Once near the walls, the colloids are carried along two antiparallel horizontal directions by nematic backflow. Computer simulations of the backflow agree with the experiment.

摘要

我们通过实验和计算机模拟研究了向列相液晶盒中电场诱导的胶体动力学。向列相主体中的固体颗粒会产生偶极型的指向矢畸变。来自壁面的弹性排斥力使颗粒保持在液晶盒的中部。交流电场会使偶极重新定向,并根据偶极方向将它们提升到顶部或底部。一旦靠近壁面,胶体就会被向列相回流沿两个反平行的水平方向带动。回流的计算机模拟结果与实验相符。

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