论文标题

用僵硬和自由接头Lennard-Jones链分子建模的列和近晶液晶建模

Nematic and smectic liquid crystals modeling with stiff and free-joint Lennard-Jones chain molecules

论文作者

Ma, Wen-Jong, Huang, Leng-Wei, Wang, Shih-Chieh, Busa Jr., Jan, Tomasovicova, Natalia, Timko, Milan, Kopcansky, Peter, Siposova, Katarina, Hu, Chin-Kun

论文摘要

由介体组成的液晶(LCS)在各种科学和工程问题中起着重要作用。许多中质量的系统如何进入LC状态是一个有趣而重要的问题。使用僵硬和自由关节的Lennard-Jones链分子作为中型元素,我们研究了中质量可以进入各种LC相的条件。该指南是在一系列系统序列的受控微调程序下消除不需要的翻译顺序。我们准备了高方向排序的配置,而不是监测秩序的增长,并找出放松的位置。这样的过程始于参考系统,该参考系统由均匀软球的短链组成,在液态蒸气共存的情况下,热力学不稳定触发了快速自发的生长过程。通过施加辅助场的短脉冲以对齐分散的簇,然后减少体积,最后将均相分子更改为异质链,我们能够在其稳定的有序状态下获得一系列系统,包括nematic and serectic LC。该模型可以扩展以研究纳米颗粒或外部场对LC结构的影响。

Liquid crystals (LCs) composed of mesogens play important roles in various scientific and engineering problems. How a system with many mesogens can enter a LC state is an interesting and important problem. Using stiff and free-joint Lennard-Jones chain molecules as mesogens, we study the conditions under which the mesogens can enter various LC phases. The guideline is to eliminate the unwanted translational orders under a controlled fine-tuning procedure across a sequence of systems. Instead of monitoring the growth of order out of the disorder, we prepare a configuration of high orientation ordering and find out where it relaxes to. Such a procedure begins with a reference system, consisting of short chains of homogeneous soft spheres, in a liquid-vapor coexistence situation, at which the thermodynamic instability triggers a fast spontaneous growing process. By applying a short pulse of auxiliary field to align the dispersedly oriented clusters, followed by reducing the volume and, finally, changing the homogeneous molecules into heterogeneous chains, we are able to obtain a range of systems, including nematic and smectic LCs, at their stable ordered states. The model can be extended to study the influence of nanoparticles or external field on the LC structure.

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