Ground-state energy and entropy of the two-dimensional Edwards-Anderson spin-glass model with different bond distributions
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Elsevier Science
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We study the two-dimensional Edwards–Anderson spin-glass model using a parallel tempering Monte Carlo algorithm. The ground-state energy and entropy are calculated for different bond distributions. In particular, the entropy is obtained by using a thermodynamic integration technique and an appropriate reference state, which is determined with the method of high-temperature expansion. This strategy provides accurate values of this quantity for finite-size lattices. By extrapolating to the thermodynamic limit, the groundstate energy and entropy of the different versions of the spin-glass model are determined.
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Spin-Glass And Other Random Models, Numerical Simulation Studies, Otras Ciencias Físicas, Ciencias Físicas, CIENCIAS NATURALES Y EXACTAS
