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Universality of the Ratio of the Critical Amplitudes of the Magnetic Susceptibility in a Two-Dimensional Ising Model with Nonmagnetic Impurities

机译:具有非磁性杂质的二维伊辛模型中磁化率临界振幅比的普遍性

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摘要

The behavior of the magnetic susceptibility of a two-dimensional Ising model with nonmagnetic impurities is investigated numerically. A new method for determining the critical amplitudes and critical temperature is developed. The results of a numerical investigation of the ratio of the critical amplitudes of the magnetic susceptibility are presented. It is shown that the ratio of the critical amplitudes is universal right up to impurity concentrations q ≤ 0.25 (the percolation point of a square lattice is q_c = 0.407254). The behavior of the effective critical exponent γ(q) of the magnetic susceptibility is discussed. Apparently, a transition from Ising-type universal behavior to percolation behavior should occur in a quite narrow concentration range near the percolation point of the lattice.
机译:数值研究了具有非磁性杂质的二维伊辛模型的磁化率行为。开发了一种确定临界振幅和临界温度的新方法。给出了磁化率临界振幅比的数值研究结果。结果表明,直到杂质浓度q≤0.25时,临界振幅之比才是通用的(方格的渗滤点为q_c = 0.407254)。讨论了磁化率的有效临界指数γ(q)的行为。显然,应该在晶格的渗流点附近相当窄的浓度范围内发生从Ising型普遍行为到渗流行为的转变。

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