Max-Planck-Institut für Polymerforschung, Ackermannweg 10, D-55128 Mainz, Germany.
J Chem Phys. 2010 Mar 21;132(11):114101. doi: 10.1063/1.3357982.
Simulation schemes for liquids or strongly fluctuating systems that allow to change the molecular representation in a subvolume of the simulation box while preserving the equilibrium with the surroundings introduce conceptual problems of thermodynamic consistency. In this work we present a general scheme based on thermodynamic arguments which ensures a thermodynamic equilibrium among molecules of different representations. The robustness of the algorithm is tested for two examples, namely, an adaptive resolution simulation, atomistic/coarse grained, for a liquid of tetrahedral molecules, and an adaptive resolution simulation of a binary mixture of tetrahedral molecules and spherical solutes.
对于允许在模拟盒的子体积中改变分子表示而同时保持与周围环境平衡的液体或强波动系统,模拟方案会引入热力学一致性的概念问题。在这项工作中,我们基于热力学论点提出了一种通用方案,该方案可确保不同表示形式的分子之间达到热力学平衡。我们通过两个示例测试了算法的稳健性,即用于四面体分子液体的原子/粗粒自适应分辨率模拟,以及四面体分子和球形溶剂二元混合物的自适应分辨率模拟。