亚微米尺度向列液晶弹性变形描述的非局部q张量法

IF 0.3 Q4 CRYSTALLOGRAPHY
Sergey I. Trashkeev, Pavel A. Statsenko, Maksim N. Khomyakov, Sergey A. Shvetsov
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引用次数: 0

摘要

在现象学方法的框架内,引入了非局部序参数的广义概念,其形式为无迹相关张量函数或张量积分算子。描述了决定向列液晶平衡取向态和相变的主要关系。由此得到的自由能的表达式是关于阶参数张量的梯度的二次表达式。非局部阶参量到局部阶参量的极限跃迁导致了一个补充经典的osen - frank弹性理论的表达式。所考虑的模型包括八个独立的弹性常数。其中3个常数与类似Frank常数的“体”常数有关,另外3个常数与“面”常数有关,其余2个常数决定了标量序参量梯度对定向场的各向异性效应。这些常数对于考虑缺陷附近的液晶状态以及描述有序参数的非均匀性引起的取向效应是必要的。结果表明,在自由能表达式中,即使在刚性边界条件的近似下,在非常数标量阶参数的情况下,“表面”项也有助于指向方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-Local Q-Tensor Approach for Description of Elastic Deformations of Nematic Liquid Crystals at Sub-Micron Scale
Within the framework of phenomenological approach, a generalized concept of a non-local order parameter, that have the form of a traceless correlation tensor function or a tensor integral operator, is introduced. The main relationships, which determine the equilibrium orientational states and the phase transitions of a deformed nematic liquid crystal, are described. The resulting expression for the free energy is quadratic with respect to the gradients of the order parameter tensor. The limiting transition of the non-local order parameter to the local one leads to an expression that complements the classical Oseen–Frank theory of elasticity. The considered model includes eight independent elastic constants. Three of them relate to "bulk" constants analogous to Frank constants, another three ones relate to "surface" constants, and the remaining two constants determine the anisotropic effect of the gradient of the scalar order parameter on the director field. The constants are necessary for the consideration of a liquid crystal state near defects, as well as for the description of orientation effects caused by the inhomogeneity of order parameter. It is shown that in the free energy expression, the "surface" terms contribute to the director orientation in the case of a non-constant scalar order parameter, even in the approximation of rigid boundary conditions.
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来源期刊
CiteScore
1.30
自引率
40.00%
发文量
30
期刊介绍: The Journal presents the following main directions of creation/construction, study and application of self-assembled materials: SYNTHESIS, STRUCTURE, PROPERTIES, MEDICINE, BIOLOGY, NANOTECHNOLOGY, SENSORS, PRACTICAL APPLICATION and INFORMATION. The journal is addressed to researchers, lecturers, university students, engineers. The publisher of the journal is the Nanomaterials Research Institute of "Ivanovo State University".
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