Suppr超能文献

各向异性液体晶体中薄钉扎脊中的弱锚定效应。

Weak-anchoring effects in a thin pinned ridge of nematic liquid crystal.

机构信息

Department of Mathematics and Statistics, University of Strathclyde, Livingstone Tower, 26 Richmond Street, Glasgow G1 1XH, United Kingdom.

School of Mathematics and Statistics, University of Glasgow, University Place, Glasgow G12 8QQ, United Kingdom.

出版信息

Phys Rev E. 2023 Mar;107(3-1):034702. doi: 10.1103/PhysRevE.107.034702.

Abstract

A theoretical investigation of weak-anchoring effects in a thin two-dimensional pinned static ridge of nematic liquid crystal resting on a flat solid substrate in an atmosphere of passive gas is performed. Specifically, we solve a reduced version of the general system of governing equations recently derived by Cousins et al. [Proc. R. Soc. A 478, 20210849 (2022)10.1098/rspa.2021.0849] valid for a symmetric thin ridge under the one-constant approximation of the Frank-Oseen bulk elastic energy with pinned contact lines to determine the shape of the ridge and the behavior of the director within it. Numerical investigations covering a wide range of parameter values indicate that the energetically preferred solutions can be classified in terms of the Jenkins-Barratt-Barbero-Barberi critical thickness into five qualitatively different types of solution. In particular, the theoretical results suggest that anchoring breaking occurs close to the contact lines. The theoretical predictions are supported by the results of physical experiments for a ridge of the nematic 4^{'}-pentyl-4-biphenylcarbonitrile (5CB). In particular, these experiments show that the homeotropic anchoring at the gas-nematic interface is broken close to the contact lines by the stronger rubbed planar anchoring at the nematic-substrate interface. A comparison between the experimental values of and the theoretical predictions for the effective refractive index of the ridge gives a first estimate of the anchoring strength of an interface between air and 5CB to be (9.80±1.12)×10^{-6}Nm^{-1} at a temperature of (22±1.5)^{∘}C.

摘要

我们针对在大气环境中静止的二维钉扎静态脊上的薄向列液晶进行了理论研究,该二维钉扎静态脊位于平板固体基底上。具体来说,我们求解了 Cousins 等人最近推导出的一般控制方程组的简化版本[Proc. R. Soc. A 478, 20210849 (2022)10.1098/rspa.2021.0849],该方程组在 Frank-Oseen 体弹性能量的单常数近似下适用于对称的薄脊,并确定了脊的形状和其中的指向矢行为。涵盖广泛参数值范围的数值研究表明,能量上优选的解可以根据 Jenkins-Barratt-Barbero-Barberi 临界厚度分类为五种不同类型的解。特别是,理论结果表明,在靠近接触线处发生锚定破坏。理论预测得到了向列型 4^{'}-戊基-4-联苯甲腈(5CB)脊的物理实验结果的支持。特别是,这些实验表明,在靠近接触线处,通过更强的摩擦平面锚定破坏了气体-向列相界面的垂直锚定。实验测量的脊的有效折射率与理论预测值之间的比较给出了空气和 5CB 之间界面的锚定强度的初步估计值,在(22±1.5)℃的温度下,该值为(9.80±1.12)×10^{-6}Nm^{-1}。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验