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Titlebook: Computer Simulation Studies in Condensed-Matter Physics XII; Proceedings of the T David P. Landau (Professor),Steven P. Lewis (Profe Confer

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Springer Series in Reliability Engineering of our on-going studies of the Hubbard model with these methods, including the . constrained path Monte Carlo method and a new . method. These methods make possible simulations at large system sizes and low temperatures. They eliminate the exponential decay of ’sign’ with system size and inverse te
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The Complexity of Proceduralized Tasks on finite square lattices with L x L sites and periodic boundary conditions in all directions where 4 < L < 192. Qualitative results for the phase diagram, as well as high statistics simulations for zero crystal field, have been obtained by computing the magnetization, susceptibility and fourth-ord
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The Complexity of Proceduralized Tasksty are presented. We developed an effective code for the single-scan version of the Hoshen-Kopelman algorithm. We measured the probabilities on the square lattice forming samples of rectangular strips with widths from 8 to 256 sites and lengths up to 3200 sites. At total of more than 1015 random num
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Lecture Notes in Computer Science proportional to the system size, which is a great improvement over previous spin-glass simulations. The Binder plot indicates the critical temperature .. ⋍ 1.3. The orderp-arameter distribution function . exhibits a feature of the droplet picture of the low-temperature phase.
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