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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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https://doi.org/10.1007/978-0-387-26237-6ling between surface and bulk degrees of freedom; consequently the surface phase diagram may be rather complex even for simple Ising like systems. In these lectures I will introduce the generic 4-dimensional surface phase diagram (bulk and surface couplings, bulk and surface fields) of Ising like sy
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https://doi.org/10.1007/978-0-387-26237-6n thin films, orderdisorder transitions on thin magnetic films, etc.) The typical simulation geometry then is a . x. x . system, where at the low confining . x . surfaces appropriate boundary “fields” are applied, while in the lateral directions periodic boundary conditions are used. In the .-direct
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https://doi.org/10.1007/978-0-387-26237-6such as a very slow decay of the time-correlation functions, stretching, etc. The dynamics of liquids that are close to a surface (free space, confining wall, etc.) is even more complex in that the stretching is increased and in that there is evidence for the presence of multiple time scales. In thi
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https://doi.org/10.1007/978-0-387-26237-6ith emphasis on self-consistent field (SCF) methods. We begin with simple models for the conformational statistics of unperturbed chains and derive the Edwards diffusion equation for a Gaussian thread in a field. We then describe a simple lattice-based approach for a polymer melt at a flat interface
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First-Order Phase Transitions,with 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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Histograms and All That,ted to histogramming. Specifically we will consider the multicanonical approach and tempering methods. The methods are illustrated with applications to systems exhibiting first-order phase transitions and spin glasses.
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978-1-4020-1464-2Springer Science+Business Media Dordrecht 2003
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