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Assessment by Monte Carlo computer simulations of the phase behavior of hard spherocylinders confined within cylindrical cavities

机译:Monte Carlo计算机模拟圆柱形空腔内的硬质球形曲线的相位行为的评估

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The phase behavior of hard spherocylinders (HSCs) confined in cylindrical cavities is studied using Monte Carlo simulations in the canonical ensemble. Results are presented for different values of the particles' aspect ratio l/sigma, where l and sigma are the length and diameter of the cylinder and hemispherical caps, respectively. Finite cavities with periodic boundary conditions along the principal axis of the cavities have been considered, where the cavity's principal axis is along the z-direction. We first focus our study in the structure induced by varying the degree of confinement, determining the HSC phase diagram for aspect ratios l/sigma = 3, 5, 7, and 9, at a fixed packing fraction eta = 0.071. By compressing the cavities along the radial direction, the isotropic phase becomes stable before the nematic phase as the length of the cavities is increased, resulting in a second-order transition. The occurrence of phase transitions has also been determined by varying eta for constant values of the cavity's length L. Systems with low aspect ratios, l/sigma = 3, 5, 7, and 9, exhibit first-order transitions with chiral, paranematic, and isotropic phases, whereas for larger HSCs, l/sigma = 50, 70, and 100, the transitions are second order with paranematic, nematic, and isotropic phases, in contrast with the behavior of non-confined systems, with first-order transitions for isotropic, nematic, smectic-A, and solid phases. Published by AIP Publishing.
机译:在典型集合中使用蒙特卡罗模拟研究了圆柱形空腔中限制在圆柱形空腔中的硬质球胶囊(HSC)的相位行为。结果出现了颗粒纵横比L / Sigma的不同值,其中L和Sigma分别是气缸和半球形帽的长度和直径。已经考虑了沿着空腔的主轴的周期边界条件的有限腔,其中腔的主轴沿z方向。我们首先将我们的研究重点集中在通过改变禁闭程度,确定纵横比L / SIGMA = 3,5,7和9的HSC相图,固定填料馏分ETA = 0.071。通过沿径向压缩空腔,在向列阶段增加时,各向同性相变,随着空腔的长度而增加,导致二阶转变。通过不同的ETa为具有低纵横比的恒定值的恒定值来确定相变的发生,L / SIGMA = 3,5,7和9,表现出具有手性,促杀剂的一阶转变,和各向同性阶段,而对于较大的HSC,L / Sigma = 50,70和100,与非限制性系统的行为相比,转变为二次阶数,与非狭窄系统的行为相比,具有一流的转换用于各向同性,向列,偏晶-A和固相。通过AIP发布发布。

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