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Journal of Physics. Condensed Matter : an Institute of Physics Journal|March 17, 2011
Confined binary two-dimensional colloidal crystals: Monte Carlo simulation of crack formationStefan Medina, Peter Virnau, Kurt BinderThe Journal of Chemical Physics|August 12, 2017
Overview: Understanding nucleation phenomena from simulations of lattice gas modelsKurt Binder, Peter VirnauPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|June 18, 2013
Monte Carlo tests of nucleation concepts in the lattice gas modelFabian Schmitz, Peter Virnau, Kurt BinderPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 15, 2014
Logarithmic finite-size effects on interfacial free energies: phenomenological theory and Monte Carlo studiesFabian Schmitz, Peter Virnau, Kurt BinderPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 8, 2009
Simulation of vapor-liquid coexistence in finite volumes: a method to compute the surface free energy of dropletsManuel Schrader, Peter Virnau, Kurt BinderPhysical Review Letters|January 31, 2015
Finite-size effects on liquid-solid phase coexistence and the estimation of crystal nucleation barriersAntonia Statt, Peter Virnau, Kurt BinderThe Journal of Chemical Physics|October 17, 2014
Perspective: The Asakura Oosawa model: a colloid prototype for bulk and interfacial phase behaviorKurt Binder, Peter Virnau, Antonia StattJournal of Physics. Condensed Matter : an Institute of Physics Journal|July 1, 2011
Heterogeneous nucleation at a wall near a wetting transition: a Monte Carlo test of the classical theoryDavid Winter, Peter Virnau, Kurt BinderPhysical Review Letters|April 15, 2014
Determination of the origin and magnitude of logarithmic finite-size effects on interfacial tension: role of interfacial fluctuations and domain breathingFabian Schmitz, Peter Virnau, Kurt BinderThe Journal of Chemical Physics|April 10, 2012
Simulation of fluid-solid coexistence in finite volumes: a method to study the properties of wall-attached crystalline nucleiDebabrata Deb, Alexander Winkler, Peter Virnau, et al.Pageof 16