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Understanding Molecular Dynamics with Stochastic Processes via Real or Virtual Dynamics

作者:De-Zhang Li, Zifei Chen, Zhijun Zhang, Jian Liu · 发表于:Chinese Journal of Chemical Physics · 年份:2017 · DOI:10.1063/1674-0068/30/cjcp1711223 · 被引用次数:16 · 研究领域:Advanced Thermodynamics and Statistical Mechanics、Spectroscopy and Quantum Chemical Studies、Spectroscopy and Laser Applications

Molecular dynamics with the stochastic process provides a convenient way to compute structural and thermodynamic properties of chemical, biological, and materials systems. It is demonstrated that the virtual dynamics case that we proposed for the Langevin equation [J. Chem. Phys. 147, 184104 (2017)] in principle exists in other types of stochastic thermostats as well. The recommended “middle” scheme [J. Chem. Phys. 147, 034109 (2017)] of the Andersen thermostat is investigated as an example. As shown by both analytic and numerical results, while the real and virtual dynamics cases approach the same plateau of the characteristic correlation time in the high collision frequency limit, the accuracy and efficiency of sampling are relatively insensitive to the value of the collision frequency in a broad range. After we compare the behaviors of the Andersen thermostat to those of Langevin dynamics, a heuristic schematic representation is proposed for understanding efficient stochastic thermostatting processes with molecular dynamics.