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- W2034209095 abstract "Velazquez and Curilef have proposed a methodology to extend Monte Carlo algorithms that are based on canonical ensemble. According to our previous study, their proposal allows us to overcome slow sampling problems in systems that undergo any type of temperature-driven phase transition. After a comprehensive review about ideas and connections of this framework, we discuss the application a re-weighting technique to improve the accuracy of microcanonical calculations, specifically, the well-known multi-histograms method of Ferrenberg and Swendsen. As example of application, we reconsider the study of four-state Potts model on the square lattice $Ltimes L$ with periodic boundary conditions. This analysis allows us to detect the existence of a very small latent heat per site $q_{L}$ during the occurrence of temperature-driven phase transition of this model, whose size dependence seems to follow a power-law $q_{L}(L)propto(1/L)^{z}$ with exponent $zsimeq0$.$26pm0$.$02$. It is discussed the compatibility of these results with the continuous character of temperature-driven phase transition when $Lrightarrow+infty$." @default.
- W2034209095 created "2016-06-24" @default.
- W2034209095 creator A5012547542 @default.
- W2034209095 creator A5037825257 @default.
- W2034209095 date "2015-03-25" @default.
- W2034209095 modified "2023-10-02" @default.
- W2034209095 title "Extended canonical Monte Carlo methods: Improving accuracy of microcanonical calculations using a reweighting technique" @default.
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- W2034209095 doi "https://doi.org/10.1103/physreve.91.033308" @default.
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