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Generalized simulated tempering realized on expanded ensembles of non-Boltzmann weights

机译:在非玻尔兹曼重物的扩展合奏上实现的广义模拟回火

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A generalized version of the simulated tempering operated in the expanded ensembles of non-Boltzmann weights has been proposed to mitigate a quasiergodicity problem occurring in simulations of rough energy landscapes. In contrast to conventional simulated tempering employing the Boltzmann weight, our method utilizes a parametrized, generalized distribution as a workhorse for stochastic exchanges of configurations and subensembles transitions, which allows a considerable enhancement for the rate of convergence of Monte Carlo and molecular dynamics simulations using delocalized weights. A feature of our method is that the exploration of the parameter space encouraging subensembles transitions is greatly accelerated using the dynamic update scheme for the weight via the average guide specific to the energy distribution. The performance and characteristic feature of our method have been validated in the liquid-solid transition of Lennard-Jones clusters and the conformational sampling of alanine dipeptide by taking two types of Tsallis [C. Tsallis, J. Stat. Phys. 52, 479 (1988)] expanded ensembles associated with different parametrization schemes. (C) 2004 American Institute of Physics.
机译:已经提出了在非玻尔兹曼权重的扩展集合中进行操作的模拟回火的通用版本,以缓解在粗糙的能源景观模拟中出现的准整数问题。与采用Boltzmann权重的常规模拟回火相比,我们的方法利用参数化的广义分布作为配置和子集合过渡的随机交换的主力,这极大地提高了Monte Carlo的收敛速度和使用非局部化的分子动力学模拟重量。我们方法的一个特点是,通过权重的动态更新方案,通过特定于能量分布的平均指导,大大加快了对参数空间鼓励子集合过渡的探索。通过使用两种类型的Tsallis [C. L.],在Lennard-Jones团簇的液固转变和丙氨酸二肽的构象采样中,已经验证了我们方法的性能和特征。 Tsallis,J. Stat。物理52,479(1988)]与不同参数化方案相关的扩展合奏。 (C)2004年美国物理研究所。

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