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Titlebook: Computer Simulations of Surfaces and Interfaces; Burkhard Dünweg,David P. Landau,Andrey I. Milchev Book 2003 Springer Science+Business Med

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Polymers at Surfaces and Interfaces,ween two immiscible polymers in the limit of very large molecular weights. Following Fredrickson et al., we outline a general fieldtheoretic approach for the mesoscopic modelling of inhomogeneous polymer systems. Using a symmetric diblock copolymer as an example, we show how a saddle point approxima
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https://doi.org/10.1007/978-0-387-26237-6s. Finally, I will comment on the status of the renormalization group results for 3-dimensional short-range critical wetting that are at odds with the results of simulations of the Ising model and of a recent experiment.
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https://doi.org/10.1007/978-0-387-26237-6If the boundary fields favor the same phase, a structure with two parallel interfaces may form, if the boundary fields favor opposite phases, formation of a single interface results. In both cases, this vertical phase separation is a rounded transition due to the finite size of the linear dimension
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https://doi.org/10.1007/978-0-387-26237-6iscuss how the relaxation dynamics of the liquid depends on the distance from the wall and propose some simple functional forms to describe this dependence. Using these dependencies it is possible to extract various dynamical length scales and we find that these scales show an Arrhenius dependence o
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Computer Simulations of Surfaces and Interfaces978-94-010-0173-1Series ISSN 1568-2609
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Svetozar R. Niketić,Kjeld Rasmussenwith second-order transitions. Then special emphasis will be placed on the finite-size scaling behaviour of first-order phase transitions, which is essential for analyzing and interpreting numerical data obtained in computer simulations.
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