Interfacial profiles between coexisting phases in thin films: Cahn Hilliard treatment versus capillary waves
arXiv:cond-mat/9810051 · doi:10.1023/A:1004510702716
Abstract
We consider an interface between two demixed A and B phases, confined in a thin film between two antisymmetric walls, one of which prefers A and the other B. Above the wetting transition, the interface is stabilized in the center of the film. Based on a suitable extension of the Cahn-Hilliard gradient-square theory in combination with the capillary wave theory, we argue that the confinement influences the interfacial structure in two ways: It squeezes the intrinsic structure and cuts off the capillary wave spectrum. As a result, the interfacial width is proportional to the film thickness D in very thin films, and proportional to the square root of D in thicker films. These effects are then discussed in detail for the special case of an interface between demixed homopolymer phases. The width of the intrinsic profile is calculated analytically as a function of film thickness in the Cahn-Hilliard approximation (weak segregation limit) and in the Helfand theory (strong segregation limit), and numerically in the self-consistent field approximation. The results are confirmed by Monte Carlo simulations of a lattice model for a polymer mixture.
to appear in J. Stat. Phys
References in corpus (7)
- Intrinsic profiles and capillary waves at homopolymer interfaces: a Monte Carlo study
- Anomalous size-dependence of interfacial profiles between coexisting phases of polymer mixtures in thin film geometry: A Monte-Carlo simulation
- Wetting and Capillary Condensation in Symmetric Polymer Blends: A comparison between Monte Carlo Simulations and Self-Consistent Field Calculations
- Capillary-Wave and Chain-Length Effects at Polymer/Polymer Interfaces
- Interfaces of Modulated Phases
- Effect of long range forces on the interfacial profiles in thin binary polymer films
- Monte Carlo simulations of interfaces in polymer blends
Cited by in corpus (6)
- Monte Carlo Methods for Estimating Interfacial Free Energies and Line Tensions
- Gradient critical phenomena in the Ising quantum chain
- From Capillary Condensation to Interface Localization Transitions in Colloid Polymer Mixtures Confined in Thin Film Geometry
- Thermodynamically Consistent Phase-Field Theory Including Nearest-Neighbor Pair Correlations Explains Failure of Mean-Field Reasoning
- Surface induced disorder in body-centered cubic alloys
- Correlations around an interface