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

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Chandrakant Aribam,Narasimha Kumarntinuous-time loop algorithm and finite-size scaling. For a model which consists of . = 1 chains with bond alternation coupled on a square lattice, we determine the ground state phase diagram and the universality class of the quantum phase transitions.
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https://doi.org/10.1007/978-0-85729-886-7ll dilutions the rather strong first-order phase transition of the pure system is found to persist, whereas for larger dilutions the theoretically expected softening to a continuous transition is confirmed. The properties of the underlying disorder distributions of thermal observables are discussed
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https://doi.org/10.1007/978-0-85729-886-7with ±. bond distributions undergo finite-temperature phase transitions with a ratio of critical exponents γ/ν= 2.4. Evaluated critical exponents agree with corresponding experimental results. The analyses are based upon the nonequilibrium relaxation from the paramagnetic state and the finite-time s
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An Outline of some Standard Packages,ition is now often called as “Alder transition”. They reported that the transition is the first order, but Halperin, Nelson [3] and Young [4] proposed an alternative melting scenario which is based on the Kosterlitz-Thouless (KT) transition. This theory is referred to the Kosterlitz-Thouless-Halperi
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https://doi.org/10.1007/978-3-642-59293-5Computer simulation; Electronic structures; Helium-Atom-Streuung; Molecular dynamics; Monte Carlo; Monte
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