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首页> 外文期刊>The Journal of Chemical Physics >Acceleration of Monte Carlo simulations through spatial updating in the grand canonical ensemble
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Acceleration of Monte Carlo simulations through spatial updating in the grand canonical ensemble

机译:大正则合集中通过空间更新来加速蒙特卡洛模拟

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摘要

A new grand canonical Monte Carlo algorithm for continuum fluid models is proposed. The method is based on a generalization of sequential Monte Carlo algorithms for lattice gas systems. The elementary moves, particle insertions and removals, are constructed by analogy with those of a lattice gas. The updating is implemented by selecting points in space (spatial updating) either at random or in a definitive order (sequential). The type of move, insertion or removal, is deduced based on the local environment of the selected points. Results on two-dimensional square-well fluids indicate that the sequential version of the proposed algorithm converges faster than standard grand canonical algorithms for continuum fluids. Due to the nature of the updating, additional reduction of simulation time may be achieved by parallel implementation through domain decomposition.(C) 2007 American Institute of Physics.
机译:提出了一种新的连续流体模型的大经典蒙特卡罗算法。该方法基于对晶格气系统的顺序蒙特卡洛算法的概括。基本的移动,粒子的插入和去除是通过类似于晶格气体的结构来构造的。通过随机地或以确定的顺序(顺序)选择空间中的点(空间更新)来实现更新。根据所选点的局部环境推导移动,插入或移除的类型。二维方井流体的结果表明,与连续流体的标准大正则算法相比,该算法的顺序版本收敛速度更快。由于更新的性质,通过域分解的并行实施可能会进一步减少仿真时间。(C)2007美国物理研究所。

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