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Application of the string method to the study of critical nuclei in capillary condensation

机译:串法在毛细管凝结临界核研究中的应用

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We adopt a continuum description for liquid-vapor phase transition in the framework of mean-field theory and use the string method to numerically investigate the critical nuclei for capillary condensation in a slit pore. This numerical approach allows us to determine the critical nuclei corresponding to saddle points of the grand potential function in which the chemical potential is given in the beginning. The string method locates the minimal energy path (MEP), which is the most probable transition pathway connecting two metastable/stable states in configuration space. From the MEP, the saddle point is determined and the corresponding energy barrier also obtained (for grand potential). Moreover, the MEP 1shows how the new phase (liquid) grows out of the old phase (vapor) along the most probable transition pathway, from the birth of a critical nucleus to its consequent expansion. Our calculations run from partial wetting to complete wetting with a variable strength of attractive wall potential. In the latter case, the string method presents a unified way for computing the critical nuclei, from film formation at solid surface to bulk condensation via liquid bridge. The present application of the string method to the numerical study of capillary condensation shows the great power of this method in evaluating the critical nuclei in various liquid-vapor phase transitions. (c) 2008 American Institute of Physics. [DOI: 10.1063/1.2996516]
机译:我们在均值场理论的框架内采用连续的液体-蒸汽相变描述,并使用弦法对狭缝中毛细管凝结的临界核进行了数值研究。这种数值方法使我们能够确定与大势函数的鞍点相对应的临界核,在该势能函数的开头给出了化学势。弦法定位最小能量路径(MEP),这是连接配置空间中两个亚稳态/稳定状态的最可能的过渡路径。根据MEP,可以确定鞍点并获得相应的能垒(对于大势能)。此外,MEP 1还显示了新相(液体)如何沿着最可能的过渡路径(从关键核的诞生到随后的扩展)从旧相(蒸气)中生长出来。我们的计算是从部分润湿到具有可变吸引力壁强度的完全润湿。在后一种情况下,弦法提供了一种计算临界核的统一方法,从固体表面的膜形成到通过液桥的整体冷凝。串方法在毛细管凝结数值研究中的当前应用表明,该方法在评估各种液相-气相转变中的临界核方面具有巨大的潜力。 (c)2008年美国物理研究所。 [DOI:10.1063 / 1.2996516]

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