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      FINDING LOW-TEMPERATURE STATES WITH PARALLEL TEMPERING, SIMULATED ANNEALING AND SIMPLE MONTE CARLO

      1 , 1 , 2
      International Journal of Modern Physics C
      World Scientific Pub Co Pte Lt

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          Abstract

          Monte Carlo simulation techniques, like simulated annealing and parallel tempering, are often used to evaluate low-temperature properties and find ground states of disordered systems. Here we compare these methods using direct calculations of ground states for three-dimensional Ising diluted antiferromagnets in a field (DAFF) and three-dimensional Ising spin glasses (ISG). For the DAFF, we find that, with respect to obtaining ground states, parallel tempering is superior to simple Monte Carlo and to simulated annealing. However, equilibration becomes more difficult with increasing magnitude of the externally applied field. For the ISG with bimodal couplings, which exhibits a high degeneracy, we conclude that finding true ground states is easy for small systems, as is already known. But finding each of the degenerate ground states with the same probability (or frequency), as required by Boltzmann statistics, is considerably harder and becomes almost impossible for larger systems.

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          Most cited references43

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          On the computational complexity of Ising spin glass models

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            Exchange Monte Carlo Method and Application to Spin Glass Simulations

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              Critical Properties from Monte Carlo Coarse Graining and Renormalization

              K. Binder (1981)
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                Author and article information

                Journal
                International Journal of Modern Physics C
                Int. J. Mod. Phys. C
                World Scientific Pub Co Pte Lt
                0129-1831
                1793-6586
                November 21 2011
                March 2003
                November 21 2011
                March 2003
                : 14
                : 03
                : 285-302
                Affiliations
                [1 ]Department of Physics, University of California Davis, Davis, CA 95616, USA
                [2 ]Institut für Theoretische Physik, Universität Göttingen, Bunsenstr. 9, D-37073 Göttingen, Germany
                Article
                10.1142/S0129183103004498
                a7198b91-d514-43b8-a3b8-63e07c6bdcf2
                © 2003
                History

                Molecular medicine,Neurosciences
                Molecular medicine, Neurosciences

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