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接触线附近界面的热涨落。

Thermal fluctuations of an interface near a contact line.

作者信息

Belardinelli D, Sbragaglia M, Gross M, Andreotti B

机构信息

Department of Physics & INFN, University of Rome "Tor Vergata", Via della Ricerca Scientifica 1, 00133, Rome, Italy.

Max-Planck-Institut für Intelligente Systeme, Heisenbergstr. 3, 70569 Stuttgart, Germany and IV. Institut für Theoretische Physik, Universität Stuttgart, Pfaffenwaldring 57, 70569 Stuttgart, Germany.

出版信息

Phys Rev E. 2016 Nov;94(5-1):052803. doi: 10.1103/PhysRevE.94.052803. Epub 2016 Nov 8.

Abstract

The effect of thermal fluctuations near a contact line of a liquid interface partially wetting an impenetrable substrate is studied analytically and numerically. Promoting both the interface profile and the contact line position to random variables, we explore the equilibrium properties of the corresponding fluctuating contact line problem based on an interfacial Hamiltonian involving a "contact" binding potential. To facilitate an analytical treatment, we consider the case of a one-dimensional interface. The effective boundary condition at the contact line is determined by a dimensionless parameter that encodes the relative importance of thermal energy and substrate energy at the microscopic scale. We find that this parameter controls the transition from a partial wetting to a pseudopartial wetting state, the latter being characterized by a thin prewetting film of fixed thickness. In the partial wetting regime, instead, the profile typically approaches the substrate via an exponentially thinning prewetting film. We show that, independently of the physics at the microscopic scale, Young's angle is recovered sufficiently far from the substrate. The fluctuations of the interface and of the contact line give rise to an effective disjoining pressure, exponentially decreasing with height. Fluctuations therefore provide a regularization of the singular contact forces occurring in the corresponding deterministic problem.

摘要

对部分润湿不可渗透基底的液体界面接触线附近热涨落的影响进行了分析和数值研究。将界面轮廓和接触线位置都视为随机变量,我们基于包含“接触”束缚势的界面哈密顿量,探索了相应波动接触线问题的平衡性质。为便于进行解析处理,我们考虑一维界面的情况。接触线处的有效边界条件由一个无量纲参数确定,该参数编码了微观尺度上热能和基底能的相对重要性。我们发现,这个参数控制着从部分润湿到伪部分润湿状态的转变,后者的特征是有一层固定厚度的薄预湿膜。相反,在部分润湿区域,轮廓通常通过指数变薄的预湿膜接近基底。我们表明,与微观尺度的物理过程无关,在离基底足够远的地方可以恢复杨氏角。界面和接触线的涨落会产生一个有效排斥压力,其随高度呈指数下降。因此,涨落为相应确定性问题中出现的奇异接触力提供了一种正则化。

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