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首页> 外文期刊>The Journal of Chemical Physics >A constant entropy increase model for the selection of parallel tempering ensembles
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A constant entropy increase model for the selection of parallel tempering ensembles

机译:用于选择平行回火合奏的常数熵增加模型

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摘要

The present paper explores a simple approach to the question of parallel tempering temperature selection. We argue that to optimize the performance of parallel tempering it is reasonable to require that the increase in entropy between successive temperatures be uniform over the entire ensemble. An estimate of the system's heat capacity, obtained either from experiment, a preliminary simulation, or a suitable physical model, thus provides a means for generating the desired tempering ensemble. Applications to the two-dimensional Ising problem indicate that the resulting method is effective, simple to implement, and robust with respect to its sensitivity to the quality of the underlying heat capacity model. (C) 2008 American Institute of Physics.
机译:本文探索了一种平行回火温度选择问题的简单方法。我们认为,要优化平行回火的性能,合理的做法是要求连续温度之间的熵增加在整个集合中是均匀的。从实验,初步模拟或合适的物理模型获得的系统热容量的估计值,因此提供了一种生成所需回火集合的方法。在二维Ising问题上的应用表明,所产生的方法对于其对基础热容量模型的质量的敏感度是有效的,易于实现的并且是可靠的。 (C)2008美国物理研究所。

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