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Interfacial Profiles Between Coexisting Phases in Thin Films: Cahn-Hilliard Treatment Versus Capillary Waves

机译:薄膜共存相之间的界面轮廓:Cahn-Hilliard处理与毛细管波

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A symmetric binary mixture (A, B) below its critical temperature T_c of unmixing is considered in a thin-film geometry confined between two parallel walls, where it is assumed that one wall prefers A and the other wall prefers B. Then an interface between the coexisting unmixed phases is stabilized, which (above the wetting transition temperature) occurs in the center of the film for an average concentration of c=1/2. We consider how the concentration profile c(z) across the thin film depends on the film thickness D. By Monte Carlo simulation of a lattice model for a polymer mixture it is shown that for relatively small D the width of the interface scales like w ∝ D , while for larger D a crossover to a behavior w ∝ D~(1/2) occurs. This behavior is explained by phenomenological theories: it is shown that the behavior at small D can be understood by a suitable extension of the Cahn-Hilliard "gradient-square"-type theory, while the behavior for large D can be traced back to the behavior of capillary waves exposed to a short-range potential by the walls. Corrections due to fast concentration variations, as they occur in the strong-segregation limit of a polymer mixture, can be accounted for by self-consistent field theory. Sobtle problems occur, however, with respect to the proper combination of these theories with the capillary wave approximation, particularly at intermediate values of D.
机译:在限制在两个平行壁之间的薄膜几何形状中,考虑了低于其分解临界温度T_c的对称二元混合物(A,B),其中假定一个壁偏爱A,另一壁偏爱B。共存的未混合相被稳定化,在平均浓度为c = 1/2时(在润湿转变温度以上)发生在膜的中心。我们考虑整个薄膜的浓度分布c(z)如何取决于薄膜厚度D。通过对聚合物混合物的晶格模型进行蒙特卡罗模拟,可以看出,对于相对较小的D,界面尺度的宽度如w ∝ D,而对于较大的D,会发生行为w ∝ D〜(1/2)的转换。这种现象由现象学理论解释:表明小D的行为可以通过Cahn-Hilliard“梯度平方”型理论的适当扩展来理解,而大D的行为可以追溯到壁暴露于短距离电势的毛细管波的行为。由于快速浓度变化引起的校正(由于它们发生在聚合物混合物的强偏析极限中),可以通过自洽场理论来解释。但是,关于这些理论与毛细管波近似的正确组合,尤其是在D的中间值时,出现了sobtle问题。

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