论文标题

手性液晶中的几何挫败感的明确表明

Explicit Demonstration of Geometric Frustration in Chiral Liquid Crystals

论文作者

Long, Cheng, Selinger, Jonathan V.

论文摘要

许多固体材料和液晶表现出几何挫败感,这意味着它们具有无法填补空间的理想局部结构。因此,全局阶段必须是理想的局部结构和几何约束之间的妥协。作为几何挫败感的明确例子,我们考虑了一个限制在带有自由边界的长圆柱体中的手性液晶。当管子的半径足够小时,导演场形成双扭配置,这是理想的局部结构。但是,当半径变大(与液晶的自然扭曲相比)时,双扭结构无法填充空间,因此导演场必须转变为其他可以填充空间的手性结构。该空间填充结构可以是(1)具有单个扭曲的胆汁灰质相,或(2)一组被披露分开的双扭区域,可以被视为蓝相的开始。我们使用理论和模拟研究了这些结构,并展示了相对自由能如何依赖于系统大小,自然扭曲和披露能量。作为另一个例子,我们还研究了一个胆汁灰质的液体晶体,这些胆汁液晶体限制在两个无限平行板之间,具有自由边界。

Many solid materials and liquid crystals exhibit geometric frustration, meaning that they have an ideal local structure that cannot fill up space. For that reason, the global phase must be a compromise between the ideal local structure and geometric constraints. As an explicit example of geometric frustration, we consider a chiral liquid crystal confined in a long cylinder with free boundaries. When the radius of the tube is sufficiently small, the director field forms a double-twist configuration, which is the ideal local structure. However, when the radius becomes larger (compared with the natural twist of the liquid crystal), the double-twist structure cannot fill space, and hence the director field must transform into some other chiral structure that can fill space. This space-filling structure may be either (1) a cholesteric phase with single twist, or (2) a set of double-twist regions separated by a disclination, which can be regarded as the beginning of a blue phase. We investigate these structures using theory and simulations, and show how the relative free energies depend on the system size, the natural twist, and the disclination energy. As another example, we also study a cholesteric liquid crystal confined between two infinite parallel plates with free boundaries.

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