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- W1987818319 abstract "Traditional observables used to locate first-order phase-transition points from Monte Carlo simulations on finite lattices usually exhibit powerlike finite-size scaling behavior. For systems in a box of volume V with periodic boundary conditions, several definitions of finite volume (pseudo-) transition temperatures ${mathit{T}}_{0}$(V) have recently been proposed which involve only exponential corrections with respect to ${mathit{T}}_{0}$ensuremath{equiv}${mathit{T}}_{0}$(ensuremath{infty}). One of these approaches suggests also a different and efficient way to compute the latent heat. These propositions are tested for the temperature-driven first-order phase transitions in the two-dimensional q-state Potts model for q=5, 8, and 10 by means of Monte Carlo simulations, using the single-cluster update algorithm and histogram reweighting techniques." @default.
- W1987818319 created "2016-06-24" @default.
- W1987818319 creator A5073674820 @default.
- W1987818319 date "1993-06-01" @default.
- W1987818319 modified "2023-09-23" @default.
- W1987818319 title "Accurate first-order transition points from finite-size data without power-law corrections" @default.
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- W1987818319 doi "https://doi.org/10.1103/physrevb.47.14757" @default.
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