Phase transitions of smectic-isotropic phase in liquid crystals

Thi Phuong Thuy Nguyen, Thi Van Anh Nguyen, Van Thanh Ngo
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Abstract

Smectic phases formed by rod-like molecules with long axes that are parallel and also arranged in planes. The smectic-isotropic phase transition is a phase change from the liquid crystal to the liquid phase. In this work, we use a mobile 6-state Potts model to study the nature of the smectic-isotropic phase transition. Microscopic interactions between neighbouring molecules in this model are supplemented with the Lennard-Jones potential. This study applies Monte Carlo simulation with the Wang-Landau algorithm to determine the characteristics of smectic-isotropic phase transitions. It is shown clearly that the smectic phase goes to the isotropic phase and undergoes a first-order transition. The results also point out that when the temperature increases, molecules on the surface are orientationally disordered, then the molecules gradually lose their positional order. These results are in agreement with experiments that revealed the coexistence of the smectic and isotropic phasesduring the phase transition process in accordance with experimental studies.
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液晶中的各向异性共晶相的相变
各向异性相是指由长轴平行且呈平面排列的杆状分子形成的各向异性相。共晶-各向异性相变是从液晶到液相的相变。在这项研究中,我们使用移动 6 态波特斯模型来研究共晶-各向同性相变的性质。在该模型中,相邻分子之间的微观相互作用辅以伦纳德-琼斯势。本研究采用 Wang-Landau 算法进行蒙特卡罗模拟,以确定各向同性相变的特征。结果清楚地表明,共晶相转变为各向同性相,并经历了一阶转变。结果还指出,当温度升高时,表面的分子取向无序,然后分子逐渐失去位置秩序。这些结果与实验结果一致,实验结果表明,在相变过程中,各向同性相和各向异性相共存。
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