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首页> 外文期刊>The Journal of Chemical Physics >Speed-up of Monte Carlo simulations by preparing starting off-lattice structures that are close to equilibrium
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Speed-up of Monte Carlo simulations by preparing starting off-lattice structures that are close to equilibrium

机译:通过准备接近均衡的起始晶格结构来加速蒙特卡罗模拟

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摘要

The Monte Carlo (MC) technique is an important tool for studying equilibrium properties of materials. When the starting configuration provided as an input to a MC calculation is far from equilibrium, an inordinate amount of computational effort may be required to bring the system closer to equilibrium in the pre-equilibration step of the MC calculation. In order to alleviate this cost, a new computational strategy is presented with the aim of rapidly generating starting off-lattice atomic structures that are already close to equilibrium. The method involves preparing a collection of on-lattice configurations using fast reverse MC calculations. Each configuration corresponds to a different value of short-range order parameter(s). Next, by performing short MC calculations with each starting structure, one measures the extent to which the distribution of local atomic arrangements has changed. The optimal configuration exhibits the smallest change in the distribution. While the optimal configuration can serve as an input to longer MC calculations, in many situations, the resulting structure may be directly used for the estimation of thermodynamic properties. Application of our approach to several off-lattice binary and ternary metal alloy systems with phase separation, good mixing, ordering, and surface segregation is demonstrated. A speed-up of >100-1000 times over the standard MC approach is achieved even with small systems containing a few thousand particles, and close-to-equilibrium structures containing million atoms can be rapidly prepared using our method within a day on a standard desktop computer. Published under license by AIP Publishing.
机译:Monte Carlo(MC)技术是研究材料均衡性能的重要工具。当作为MC计算的输入提供的起始配置远离均衡时,可能需要过多的计算工作量来使系统更接近MC计算的预平衡步骤中的平衡。为了减轻这种成本,提出了一种新的计算策略,目的是快速地产生已经接近均衡的起始晶格原子结构。该方法涉及使用快速反向MC计算准备一组晶格配置。每个配置对应于短程顺序参数的不同值。接下来,通过用每个起始结构执行短MC计算,可以测量局部原子排列的分布改变的程度。最佳配置表现出分布的最小变化。虽然最佳配置可以用作更长MC计算的输入,但在许多情况下,所得到的结构可以直接用于估计热力学性质。我们对多晶硅二元和三元金属合金系统的应用进行了分离,良好的混合,排序和表面偏析。即使使用含有几千颗粒的小型系统,也可以通过含有几千个颗粒的小系统来实现> 100-1000次的加速,并且可以在标准的一天内使用我们的方法快速制备含有百万原子的近距离结构台式电脑。通过AIP发布在许可证下发布。

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