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Sonsin, A F; Cortes, M R; Nunes, D R; Gomes, J V; Costa, R S, E-mail: arturfalqueto_sonsin@hotmail.com, E-mail: mariane_cortess@hotmail.com, E-mail: danii.nunes@hotmail.com, E-mail: janygovi@gmail.com, E-mail: rscosta.unir@gmail.com2015
AbstractAbstract
[en] We simulate the Ising Model with the Monte Carlo method and use the algorithms of Metropolis to update the distribution of spins. We found that, in the specific case of the three-dimensional Ising Model, methods of Metropolis are efficient. Studying the system near the point of phase transition, we observe that the magnetization goes to zero. In our simulations we analyzed the behavior of the magnetization and magnetic susceptibility to verify the phase transition in a paramagnetic to ferromagnetic material. The behavior of the magnetization and of the magnetic susceptibility as a function of the temperature suggest a phase transition around KT/J ≈ 4.5 and was evidenced the problem of finite size of the lattice to work with large lattice. (paper)
Source
37. Brazilian meeting on nuclear physics; Sao Paulo (Brazil); 8-12 Sep 2014; Available from http://dx.doi.org/10.1088/1742-6596/630/1/012057; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Journal of Physics. Conference Series (Online); ISSN 1742-6596;
; v. 630(1); [5 p.]

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