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      Dilution of Ferromagnets via a Random Graph-based Strategy

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          Abstract

          The dynamics and behavior of ferromagnets have a great relevance even beyond the domain of statistical physics. In this work, we propose a Monte Carlo method, based on random graphs, for modeling their dilution. In particular, we focus on ferromagnets with dimension \(D \ge 4\), which can be approximated by the Curie-Weiss model. Since the latter has as graphic counterpart a complete graph, a dilution can be in this case viewed as a pruning process. Hence, in order to exploit this mapping, the proposed strategy uses a modified version of the Erd\H{o}s-Renyi graph model. In doing so, we are able both to simulate a continuous dilution, and to realize diluted ferromagnets in one step. The proposed strategy is studied by means of numerical simulations, aimed to analyze main properties and equilibria of the resulting diluted ferromagnets. To conclude, we also provide a brief description of further applications of our strategy in the field of complex networks.

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          Author and article information

          Journal
          2017-02-14
          Article
          1702.04324
          775be274-2373-49d4-9660-731a4c14f98b

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

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          Custom metadata
          21 pages, 7 figures
          cond-mat.stat-mech cond-mat.dis-nn

          Condensed matter,Theoretical physics
          Condensed matter, Theoretical physics

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