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Semi-classical generalized Langevin equation for equilibrium and nonequilibrium molecular dynamics simulation

机译:用于平衡和非醌分子动力学模拟的半古典广义Langevin方程

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摘要

Molecular dynamics (MD) simulation based on Langevin equation has been widely used in the study of structural, thermal properties of matter in different phases. Normally, the atomic dynamics are described by classical equations of motion and the effect of the environment is taken into account through the fluctuating and frictional forces. Generally, the nuclear quantum effects and their coupling to other degrees of freedom are difficult to include in an efficient way. This could be a serious limitation on its application to the study of dynamical properties of materials made from light elements, in the presence of external driving electrical or thermal fields. One example of such system is single molecule dynamics on metal surface, an important system that has received intense study in surface science. In this review, we summarize recent effort in extending the Langevin MD to include nuclear quantum effect and their coupling to flowing electrical current. We discuss its applications in the study of adsorbate dynamics on metal surface, current-induced dynamics in molecular junctions, and quantum thermal transport between different reservoirs.
机译:基于Langevin方程的分子动力学(MD)模拟已广泛用于不同阶段的物质结构,热性质的研究。通常,通过经典的运动方程描述原子动力学,并且通过波动和摩擦力考虑环境的效果。通常,核量子效应及其与其他自由度的耦合难以以有效的方式包括。这可能是对应用于外部驱动电场或热场的外部驾驶或热场的材料的动态特性研究的严重限制。这种系统的一个例子是金属表面上的单分子动力学,这是一种在表面科学中获得激烈研究的重要系统。在这篇综述中,我们始终总结了延长Langevin MD的努力,包括核量子效应及其与流动电流的耦合。我们讨论其在对金属表面,电流诱导动力学中的吸附动力学研究中的应用,以及不同储层之间的量子热输送。

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