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各向异性流体中三重扭曲类粒子激发的三维结构和多稳态光开关。

Three-dimensional structure and multistable optical switching of triple-twisted particle-like excitations in anisotropic fluids.

机构信息

Department of Physics, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

Nat Mater. 2010 Feb;9(2):139-45. doi: 10.1038/nmat2592. Epub 2009 Dec 6.

Abstract

Control of structures in soft materials with long-range order forms the basis for applications such as displays, liquid-crystal biosensors, tunable lenses, distributed feedback lasers, muscle-like actuators and beam-steering devices. Bistable, tristable and multistable switching of well-defined structures of molecular alignment is of special interest for all of these applications. Here we describe the facile optical creation and multistable switching of localized configurations in the molecular orientation field of a chiral nematic anisotropic fluid. These localized chiro-elastic particle-like excitations--dubbed 'triple-twist torons'--are generated by vortex laser beams and embed the localized three-dimensional (3D) twist into a uniform background. Confocal polarizing microscopy and computer simulations reveal their equilibrium internal structures, manifesting both skyrmion-like and Hopf fibration features. Robust generation of torons at predetermined locations combined with both optical and electrical reversible switching can lead to new ways of multistable structuring of complex photonic architectures in soft materials.

摘要

具有长程有序形式的软物质结构控制是各种应用的基础,例如显示器、液晶生物传感器、可调谐透镜、分布式反馈激光器、类肌肉致动器和光束转向装置。对于所有这些应用,明确的分子排列结构的双稳态、三稳态和多稳态切换都特别感兴趣。在这里,我们描述了手性向列各向异性流体中分子取向场中局部配置的简便光创建和多稳态切换。这些局部的手性弹性粒子状激发体——被称为“三重扭曲扭子”——是由涡旋激光束产生的,并将局部三维(3D)扭曲嵌入到均匀背景中。共焦偏振显微镜和计算机模拟揭示了它们的平衡内部结构,表现出类斯格明子和霍普夫纤维的特征。在预定位置稳健地产生扭子,结合光学和电可逆切换,可以为软物质中复杂光子结构的多稳态结构化开辟新途径。

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