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强受挫液晶中有序的蒙特卡罗研究。

Monte Carlo study of the ordering in a strongly frustrated liquid crystal.

机构信息

Department of Physics and Astronomy, University of Sheffield, Sheffield S3 7RH, United Kingdom.

CERN, Route de Meyrin 385, 1217 Meyrin, Switzerland.

出版信息

Phys Rev E. 2017 Jun;95(6-1):062126. doi: 10.1103/PhysRevE.95.062126. Epub 2017 Jun 20.

Abstract

We have performed Monte Carlo simulations to investigate the temperature dependence of the ordering of the side chains of the X-shaped liquid crystal molecules which are arranged in a hexagonal array. Each hexagon contains six side chains, one from each side of the hexagon. Each liquid crystal molecule has two, dissimilar, side chains, one that contains silicon and one that contains fluorine. Like chains attract each other more strongly than unlike chains and this drives an order-disorder transition. The system is frustrated because it is not possible to find a configuration in which all the hexagons are occupied by either all silicon or all fluorine chains. There are two phase transitions. If only pairwise interactions are included it is found that there is an interesting fluctuating phase between the disordered phase and the fully ordered ground state. This did not agree with the experiments where an intermediate phase was seen that had long range order on one of the three sublattices. Agreement was found when the calculations were modified to include attractive three-body interactions between the silicon chains.

摘要

我们进行了蒙特卡罗模拟,以研究排列在六边形阵列中的 X 形液晶分子侧链的有序性随温度的变化。每个六边形包含六个侧链,每个侧链来自六边形的一侧。每个液晶分子有两个不同的侧链,一个含有硅,一个含有氟。相似的链比不相似的链更强烈地相互吸引,这导致了有序-无序转变。由于不可能找到一种配置,使得所有六边形都被硅链或氟链完全占据,因此系统受到了挫折。存在两个相变。如果只包括成对相互作用,则发现无序相和完全有序的基态之间存在有趣的涨落相。这与实验结果不一致,实验中观察到在三个子晶格中的一个上具有长程有序的中间相。当计算被修改以包括硅链之间的吸引力三体相互作用时,就可以得到一致的结果。

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