Malakis A, Berker A Nihat, Fytas N G, Papakonstantinou T
Department of Physics, Section of Solid State Physics, University of Athens, Panepistimiopolis, GR 15784 Zografos, Athens, Greece.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jun;85(6 Pt 1):061106. doi: 10.1103/PhysRevE.85.061106. Epub 2012 Jun 6.
The effects of bond randomness on the universality aspects of the simple cubic lattice ferromagnetic Blume-Capel model are discussed. The system is studied numerically in both its first- and second-order phase transition regimes by a comprehensive finite-size scaling analysis. We find that our data for the second-order phase transition, emerging under random bonds from the second-order regime of the pure model, are compatible with the universality class of the 3d random Ising model. Furthermore, we find evidence that the second-order transition emerging under bond randomness from the first-order regime of the pure model belongs to a new and distinctive universality class. The first finding reinforces the scenario of a single universality class for the 3d Ising model with the three well-known types of quenched uncorrelated disorder (bond randomness, site and bond dilution). The second amounts to a strong violation of the universality principle of critical phenomena. For this case of the ex-first-order 3d Blume-Capel model, we find sharp differences from the critical behaviors, emerging under randomness, in the cases of the ex-first-order transitions of the corresponding weak and strong first-order transitions in the 3d three-state and four-state Potts models.
讨论了键无序对简单立方晶格铁磁Blume-Capel模型普适性方面的影响。通过全面的有限尺寸标度分析,对该系统在其一阶和二阶相变区域进行了数值研究。我们发现,在随机键作用下从纯模型的二阶区域出现的二阶相变数据,与三维随机伊辛模型的普适类兼容。此外,我们发现有证据表明,在随机键作用下从纯模型的一阶区域出现的二阶相变属于一个新的独特普适类。第一个发现强化了具有三种著名类型的淬火不相关无序(键无序、格点和键稀释)的三维伊辛模型单一普适类的情形。第二个发现严重违反了临界现象的普适性原理。对于这种前一阶三维Blume-Capel模型的情况,我们发现它与三维三态和四态Potts模型中相应的弱一阶和强一阶转变的前一阶转变在随机情况下出现的临界行为有明显差异。