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首页> 外文期刊>The Journal of Chemical Physics >Interfacial layering and capillary roughness in immiscible liquids
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Interfacial layering and capillary roughness in immiscible liquids

机译:不混溶液体中的界面分层和毛细管粗糙度

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摘要

The capillary roughness and the atomic density profiles of extended interfaces between immiscible liquids are determined as a function of the interface area by using molecular dynamics and Lennard-Jones (12-6) potentials. We found that with increasing area, the interface roughness diverges logarithmically, thus fitting the theoretical mean-field prediction. In systems small enough for the interfacial roughness not to blur the structural details, atomic density profiles across the fluid interface are layered with correlation length in the range of molecular correlations in liquids. On increasing the system size, the amplitude of the thermally excited position fluctuations of the interface increases, thus causing layering to rapidly vanish, if density profiles are computed without special care. In this work, we present and validate a simple method, operating in the direct space, for extracting from molecular dynamics trajectories the "intrinsic" structure of a fluid interface that is the local density profile of the interface cleaned from capillary wave effects. Estimated values of interfacial properties such as the tension, the intrinsic width, and the lower wavelength limit of position fluctuations are in agreement with results collected from the literature.
机译:通过使用分子动力学和Lennard-Jones(12-6)电势,确定了不混溶液体之间扩展界面的毛细管粗糙度和原子密度分布,作为界面面积的函数。我们发现,随着面积的增加,界面粗糙度在对数上发散,从而符合理论平均场的预测。在足以使界面粗糙度不模糊结构细节的系统中,流体界面上的原子密度分布以液体中分子相关范围内的相关长度分层。在增加系统尺寸时,如果不特别注意计算密度分布,界面的热激发位置波动的幅度会增加,从而导致分层迅速消失。在这项工作中,我们提出并验证了一种在直接空间中操作的简单方法,该方法用于从分子动力学轨迹中提取流体界面的“本征”结构,该结构是从毛细波效应中清除​​的界面的局部密度分布。界面特性(例如张力,固有宽度和位置波动的波长下限)的估计值与从文献中收集的结果一致。

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