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High-Precision Monte Carlo Simulation of the Ising Models on the Penrose Lattice and the Dual Penrose Lattice

机译:彭罗斯格子和双重彭罗斯格子上Ising模型的高精度蒙特卡洛模拟

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摘要

We study the Ising models on the Penrose lattice and the dual Penrose lattice by means of the high-precision Monte Carlo simulation. Simulating systems up to the total system size N = 20633239, we estimate the critical temperatures on those lattices with high accuracy. For high-speed calculation, we use the generalized method of the single-GPU-based computation for the Swendsen-Wang multi-cluster algorithm of Monte Carlo simulation. As a result, we estimate the critical temperature on the Penrose lattice as T-c/J = 2.39781 +/- 0.00005 and that of the dual Penrose lattice as T-c*/J = 2.14987 +/- 0.00005. Moreover, we definitely confirm the duality relation between the critical temperatures on the dual pair of quasilattices with a high degree of accuracy, sinh(2J/T-c) sinh(2J/T-c*) = 1.00000 +/- 0.00004.
机译:我们通过高精度蒙特卡洛模拟研究了Penrose晶格和双重Penrose晶格上的Ising模型。模拟总系统规模最大为N = 20633239的系统,我们可以高精度估算这些晶格上的临界温度。对于高速计算,我们将基于单GPU的计算的通用方法用于蒙特卡洛模拟的Swendsen-Wang多集群算法。结果,我们估计彭罗斯晶格上的临界温度为T-c / J = 2.39781 +/- 0.00005,而双重彭罗斯晶格上的临界温度为T-c * / J = 2.14987 +/- 0.00005。此外,我们肯定地以双精度准对确定了准双晶对上的临界温度之间的对偶关系,即sinh(2J / T-c)sinh(2J / T-c *)= 1.00000 +/- 0.00004。

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