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Titlebook: Computer Simulation Studies in Condensed-Matter Physics XIII; Proceedings of the T David P. Landau,Steven P. Lewis,Heinz-Bernd Schütt Confe

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Solution of the Multifluxline Ground State Problem in Disordered Systemsalgorithm from combinatorial optimization. This method is applied to the .-line model with . fluxlines (FL) in a 2 or 3 dimensional environment of width . and height . with pure point disorder, hard-core repulsion and fixed boundary conditions. We find that the saturation roughness of the FL scales like .. ∼ In . (for 2. and in dense limit for 3.).
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henomenal growth in the power of computer simulations, The University of Georgia formed the first institu­ tional unit devoted to the use of simulations in research and teaching: The Center for Simulational Physics. As the international simulations community expanded further, we sensed a need for a
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Lecture Notes in Computer Science-principle calculations we will describe the connection between so called ‘ab-initio’ approaches and traditional model techniques. We discuss in details what kind of new effects such treatment brings in comparison with traditional classical local moment description.
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Silvia M. Müller,Wolfgang J. Paulcrystal symmetry breaking operators are computed. A “plaquette RVB”, with spontaneously broken translation symmetry and no broken rotation symmetry, comes out from our numerical simulations as the most plausible ground state for hi ../.. ≃ 0.5.
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https://doi.org/10.1007/3-540-60580-0usters, called merons, alleviates the sign problem and in certain cases solves it completely. Among the variety of problems that can be solved using these techniques there also exist some severe fermion sign problems. A pedagogical discussion of the above ideas is presented here with an emphasis on applications to fermionic systems.
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