The Journal of Chemical Physics · 2015 · 49 citations · 61 references
Numerical AnalysisEngineeringMechanical EngineeringComputational MechanicsSoft MatterSimple LiquidMechanicsNumerical SimulationThermodynamicsMulti-physics ModellingHard SpheresPhysicsSurface TensionMechanical ModelingMultiphysics ProblemMultiphase FlowInterface PropertyInterfacial PhenomenonNatural SciencesApplied PhysicsInterfacial StudyInterfacial TensionEnsemble Switch MethodMultiscale Modeling
We present a systematic thermodynamic integration approach to compute interfacial tensions for solid-liquid interfaces, which is based on the ensemble switch method. Applying Monte Carlo simulations and finite-size scaling techniques, we obtain results for hard spheres, which are in agreement with previous computations. The case of solid-liquid interfaces in a variant of the effective Asakura-Oosawa model and of liquid-vapor interfaces in the Lennard-Jones model are discussed as well. We demonstrate that a thorough finite-size analysis of the simulation data is required to obtain precise results for the interfacial tension.
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Daniel Bonn, Jens Eggers, Joseph O. Indekeu et al. · Reviews of Modern Physics · 2009 · 2.7K citations
Materials Science, Different Wetting Scenarios, Engineering +15
Phase separation in confined systems
Lev D. Gelb, Keith E. Gubbins, Ravi Radhakrishnan et al. · Reports on Progress in Physics · 1999 · 1.5K citations
Engineering, Simple Liquid, Physics +11