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Universality aspects of the 2d random-bond Ising and 3d Blume-Capel models

机译:2d随机键Ising和3d Blume-Capel模型的通用性

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We report on large-scale Wang-Landau Monte Carlo simulations of the critical behavior of two spin models in two- (2d) and three-dimensions (3d), namely the 2d random-bond Ising model and the pure 3d Blume-Capel model at zero crystal-field coupling. The numerical data we obtain and the relevant finite-size scaling analysis provide clear answers regarding the universality aspects of both models. In particular, for the random-bond case of the 2d Ising model the theoretically predicted strong universality's hypothesis is verified, whereas for the second-order regime of the Blume-Capel model, the expected d = 3 Ising universality is verified. Our study is facilitated by the combined use of the Wang-Landau algorithm and the critical energy subspace scheme, indicating that the proposed scheme is able to provide accurate results on the critical behavior of complex spin systems.
机译:我们报告了在二维(2d)和三维(3d)中两个自旋模型的临界行为的大规模Wang-Landau Monte Carlo模拟,即2d随机键Ising模型和纯3d Blume-Capel模型在零晶场耦合。我们获得的数值数据和相关的有限尺寸缩放分析为两个模型的通用性方面提供了清晰的答案。特别是,对于2d Ising模型的随机键合情况,可以验证理论上预测的强普遍性假设,而对于Blume-Capel模型的二阶条件,可以验证预期的d = 3 Ising普遍性。 Wang-Landau算法和临界能量子空间方案的组合使用为我们的研究提供了便利,表明所提出的方案能够对复杂自旋系统的临界行为提供准确的结果。

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