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Titlebook: Computer Simulation Studies in Condensed Matter Physics III; Proceedings of the T David P. Landau,K. K. Mon,Heinz-Bernd Schüttler Conferenc

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楼主: CURD
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Numerical Evaluation of Candidate Wavefunctions for High-Temperature Superconductivitytroduction to the conceptual background of the problem is given, and the basic technical details of the method are summarized. The chief physical results, particularly the prediction of antiferromagnetic fluctuations in almost localized Fermi liquids, are outlined. The consequences for high-temperat
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Two-Dimensional Quantum Antiferromagnet at Low Temperatureso and low temperatures. We use mainly numerical methods, including variational Monte Carlo, quantum Monte Carlo and exact numerical diagonalization techniques. We compare our results to those obtained by other techniques and to certain experimental data obtained on undoped copper-oxygen antiferromag
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Finite-Size Scaling Study of the Simple Cubic Three-State Potts Glassansition of structural and orientational glasses. A mean-field approach /1/ predicts a low temperature behavior completely different from what is known from Ising spin glasses /2/. But short range models differ markedly from mean-field-predictions. So it is natural to ask, how the short range Potts
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https://doi.org/10.1007/978-3-8349-8103-5 approximation does not show good CAM scaling. It produces misleading values of exponents from the CAM coefficients of the clusters we have calculated. Our modified Bethe approximation can be easily expended to the super-effective-field theory and will be useful for studying exotic phase transitions.
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Monte Carlo Analysis of the lsing Model and CAM approximation does not show good CAM scaling. It produces misleading values of exponents from the CAM coefficients of the clusters we have calculated. Our modified Bethe approximation can be easily expended to the super-effective-field theory and will be useful for studying exotic phase transitions.
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https://doi.org/10.1057/9780230244535al decomposition is discussed briefly..In summary, it is shown that the statics and dynamics of ordering phenomena pose many interesting and nontrivial problems in statistical mechanics, and that Monte Carlo simulations yield a lot of insight into such problems, and also contribute to a better understanding of experiments and real materials.
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