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      Wang-Landau study of the 3D Ising model with bond disorder

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          Abstract

          We implement a two-stage approach of the Wang-Landau algorithm to investigate the critical properties of the 3D Ising model with quenched bond randomness. In particular, we consider the case where disorder couples to the nearest-neighbor ferromagnetic interaction, in terms of a bimodal distribution of strong versus weak bonds. Our simulations are carried out for large ensembles of disorder realizations and lattices with linear sizes \(L\) in the range \(L=8-64\). We apply well-established finite-size scaling techniques and concepts from the scaling theory of disordered systems to describe the nature of the phase transition of the disordered model, departing gradually from the fixed point of the pure system. Our analysis (based on the determination of the critical exponents) shows that the 3D random-bond Ising model belongs to the same universality class with the site- and bond-dilution models, providing a single universality class for the 3D Ising model with these three types of quenched uncorrelated disorder.

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          Most cited references21

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          Rounding of first-order phase transitions in systems with quenched disorder

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            CubicN-vector model and randomly dilute Ising model in general dimensions

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              Inequality for the Infinite-Cluster Density in Bernoulli Percolation

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                Author and article information

                Journal
                18 April 2011
                Article
                10.1140/epjb/e2011-20091-4
                1104.3524
                ea9ed63a-82d2-4e6f-9ed6-3c1312e0dc31

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                Eur. Phys. J. B 81, 245-251 (2011)
                7 pages, 7 figures, to be published in Eur. Phys. J. B
                cond-mat.stat-mech

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