Kim Minjung, Kim Eunji, Lee Seunghoon, Kim Jun Soo, Lee Sangyoub
Department of Chemistry , Seoul National University , Seoul 08826 , South Korea.
Department of Chemistry and Nanoscience , Ewha Womans University , Seoul 03760 , South Korea.
J Phys Chem A. 2019 Feb 28;123(8):1689-1699. doi: 10.1021/acs.jpca.8b09082. Epub 2019 Feb 15.
The well-established molecular dynamics simulation methods for constant- NPT ensemble systems such as the Andersen-Nosé-Hoover method and their variants may alter the dynamic properties of the molecules under consideration, because their equations of motion are modified by the coupling with thermostat or barostat. To circumvent this artifact, we propose a new molecular dynamics simulation algorithm, by which only the molecules near the wall of the simulation box are coupled to the thermostat and barostat and the molecules of interest placed in the inner part of the simulation box remain intact. We test the efficiency of our algorithm in attaining the target temperature and pressure and the conformity of the calculated equilibrium and dynamic properties to those of a constant- NPT ensemble system.
用于等压等温系综系统的成熟分子动力学模拟方法,如安德森-诺西-胡佛方法及其变体,可能会改变所考虑分子的动力学性质,因为它们的运动方程通过与恒温器或压力调节器的耦合而被修改。为了规避这种人为因素,我们提出了一种新的分子动力学模拟算法,通过该算法,只有模拟盒壁附近的分子与恒温器和压力调节器耦合,而置于模拟盒内部的目标分子保持不变。我们测试了我们算法在达到目标温度和压力方面的效率,以及计算得到的平衡和动力学性质与等压等温系综系统的性质的一致性。