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首页> 外文期刊>Physical review, E >Generalized van derWaals theory for phase behavior of two-dimensional nematic liquid crystals: Phase ordering and the equation of state
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Generalized van derWaals theory for phase behavior of two-dimensional nematic liquid crystals: Phase ordering and the equation of state

机译:二维向液晶相位行为的广义范德文理论:相位排序和状态方程

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摘要

Liquid crystalline ordering of anisotropic particles in two dimensions is important in many physical and biological systems and their phase behavior is still a topic of interest. A generalized van der Waals theory is formulated, accounting for repulsive excluded volume and attractive van derWaals and Maier-Saupe interactions, for rectangles confined to two dimensions. The phase ordering transitions and equation of state are analyzed as a function of the model parameters (aspect ratio L/B and isotropic and anisotropic interaction parameters χ and ν). Different phase transitions are observed: continuous isotropic-nematic (high L/B and ν), first-order isotropic-nematic (intermediate L/B and small ν), and continuous isotropic-tetratic (small L/B and ν) followed by a continuous tetratic-nematic transition at higher densities. Increasing L/B decreases the pressure, and this effect is more pronounced in the nematic than in the isotropic phase. Increasing both interaction parameters decreases pressure and can lead to phase separation.
机译:两种尺寸中各向异性颗粒的液晶顺序在许多物理和生物系统中是重要的,并且它们的相位行为仍然是一个感兴趣的话题。制定了广泛的范德瓦尔斯理论,占排斥排斥的卷和有吸引力的范德尔德和毛利赛族的交互,为矩形限制在两个方面。作为模型参数的函数(纵横比L / B和各向同性和各向异性相互作用参数χ和ν)分析了阶段排序的转换和状态方程。观察到不同的相转变:连续各向同性 - 向列(高L / B和Ⅵ),一阶位辐射 - 列(中间L / B和小ν),以及连续各向同性 - 潮(小L / B和ν),然后是在较高密度下连续的紫外线转变。增加L / B降低压力,并且该效果在对列中比在各向同性相中更明显。增加两个相互作用参数降低压力并且可以导致相分离。

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