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arXiv:cond-mat/9905078·v2·Statistical Mechanics

Improved high-temperature expansion and critical equation of state of three-dimensional Ising-like systems

Massimo Campostrini🇮🇹 · Andrea Pelissetto🇮🇹 · Paolo Rossi🇮🇹 · Ettore Vicari🇮🇹

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Abstract

High-temperature series are computed for a generalized Ising model with arbitrary potential. Two specific ``improved'' potentials (suppressing leading scaling corrections) are selected by Monte Carlo computation. Critical exponents are extracted from high-temperature series specialized to improved potentials, achieving high accuracy; our best estimates are: , , , , . By the same technique, the coefficients of the small-field expansion for the effective potential (Helmholtz free energy) are computed. These results are applied to the construction of parametric representations of the critical equation of state. A systematic approximation scheme, based on a global stationarity condition, is introduced (the lowest-order approximation reproduces the linear parametric model). This scheme is used for an accurate determination of universal ratios of amplitudes. A comparison with other theoretical and experimental determinations of universal quantities is presented.

Comments: 65 pages, 1 figure, revtex. New Monte Carlo data by Hasenbusch enabled us to improve the determination of the critical exponents and of the equation of state. The discussion of several topics was improved and the bibliography was updated

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