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Energy fluctuations and the singularity of specific heat in 3D Ising model

机译:三维读模型中特定热量的能量波动与奇异性

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We study the energy fluctuations in 3D Ising model near the phase transition point. Specific heat is a relevant quantity which is directly related to the mean squared amplitude of the energy fluctuations in the system. We have made extensive Monte Carlo simulations in 3D Ising model to clarify the character of the singularity of the specific heat C_V based on the finite-size scaling of its maximal values C_V~(max) depending on the linear size of the lattice L. An original iterative method has been used which automatically finds the pseudocritical temperature corresponding to the maximum of C_V. The simulations made up to L ≤ 128 with application of the Wolff's cluster algorithm allowed us to verify the possible power-like as well as logarithmic singularity of the specific heat predicted by different theoretical treatments. The most challenging and interesting result we have obtained is that the finite-size scaling of C_V~(max) in 3D Ising model is well described by a logarithmic rather than power-like ansatz, just like in 2D case. Another modification of our iterative method has been considered to estimate the critical coupling of 3D Ising model from the Binder cumulant data within L ∈ [96; 384]. Furthermore, the critical exponent β has been evaluated from the simulated magnetization data within the range of reduced temperatures t ≥ 0.000086 and system sizes L ≤ 410.
机译:我们研究了相位过渡点附近的3D ising模型中的能量波动。比热是与系统中能量波动的平均平方幅度直接相关的相关量。我们在3D ising模型中制定了广泛的蒙特卡罗模拟,以阐明了基于其最大值C_V〜(MAX)的有限尺寸缩放的特定热C_V的奇异性的特征,这取决于格子L.的线性尺寸。已经使用了原始迭代方法,其自动找到对应于C_V的最大值的伪关键处。具有Wolff的群集算法的应用达到L≤128的模拟使我们允许我们验证可能的电源以及由不同理论处理预测的特定热量的对数奇异性。我们获得的最具挑战性和有趣的结果是,3D ising模型中C_V〜(MAX)的有限大小缩放是由对数而不是电源类似的Ansatz良好的描述,就像在2D情况下一样。已经考虑了我们迭代方法的另一个修改,以估计L∞[96内的粘合剂累积数据3D表达模型的关键耦合。 384]。此外,临界指数β已经从模拟的磁化数据评估在降低温度T≥0000086和系统尺寸L≤410的范围内。

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