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Generalized simulated tempering for exploring strong phase transitions

机译:用于探索强相变的广义模拟回火

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摘要

An extension of the simulation tempering algorithm is proposed. It is shown to be particularly suited to the exploration of first-order phase transition systems characterized by the backbending or S -loop in the statistical temperature or a microcanonical caloric curve. A guided Markov process in an auxiliary parameter space systematically combines a set of parametrized Tsallis-weight ensemble simulations, which are targeted to transform unstable or metastable energy states of canonical ensembles into stable ones and smoothly join ordered and disordered phases across phase transition regions via a succession of unimodal energy distributions. The inverse mapping between the sampling weight and the effective temperature enables an optimal selection of relevant Tsallis-weight parameters. A semianalytic expression for the biasing weight in parameter space is adaptively updated "on the fly" during the simulation to achieve rapid convergence. Accelerated tunneling transitions with a comprehensive sampling for phase-coexistent states are explicitly demonstrated in systems subject to strong hysteresis including Potts and Ising spin models and a 147 atom Lennard-Jones cluster.
机译:提出了模拟回火算法的扩展。已显示它特别适用于探索以统计温度或微规范热曲线中的反弯或S环为特征的一阶相变系统。辅助参数空间中的引导马尔可夫过程系统地结合了一组参数化的Tsallis权重集成仿真,旨在将规范集合的不稳定或亚稳态能态转换为稳定能态,并通过连续的单峰能量分布。采样权重和有效温度之间的逆映射使相关Tsallis权重参数的最佳选择成为可能。在仿真过程中“动态”自适应更新参数空间中偏权的半解析表达式,以实现快速收敛。在具有强大滞后作用的系统(包括Potts和Ising自旋模型以及147原子Lennard-Jones簇)中,明确证明了具有相态共存状态的全面采样的加速隧穿过渡。

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