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A generalized Hamiltonian-based algorithm for rigorous equilibrium molecular dynamics simulation in the isobaric-isothermal ensemble

机译:基于广义哈密顿量的等压-等温集成中严格的平衡分子动力学模拟算法

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摘要

In this work, we employ a Hamiltonian-based procedure to derive a generalized Nose barostat, which generates trajectories that rigorously satisfy the statistical mechanical isobaric-isothermal (NpT) ensemble. This generalized algorithm, unlike Nose's original NpT algorithm, maintains rigor in the presence of (i) a non-zero system momentum and (ii) non-negligible external forces. The generalized algorithm reduces to the conventional Nose NpT algorithm when neither condition is satisfied. The key element of the generalized algorithm is that the thermostat and barostat are applied only to those degrees of freedom that contribute to the temperature and pressure, which excludes, e.g. the total system momentum. We show that the generalized algorithm satisfies the two criteria for rigor (Hamiltonian and non-Hamiltonian) that exist in the literature. Finally, we provide some numerical examples demonstrating the success of the generalized algorithm.
机译:在这项工作中,我们采用基于哈密顿的过程来导出广义的鼻子恒压器,其生成的轨道严格满足统计等压-等温(NpT)系综。与Nose最初的NpT算法不同,该通用算法在存在以下情况时保持了严谨性:(i)非零系统动量和(ii)不可忽略的外力。当两个条件都不满足时,通用算法简化为常规的Nose NpT算法。广义算法的关键要素是仅将恒温器和恒压器应用于那些有助于温度和压力的自由度,但不包括例如系统总动量。我们表明,广义算法满足文献中存在的两个严格的标准(哈密顿和非哈密顿)。最后,我们提供了一些数值示例,证明了该算法的成功。

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