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Semiquantal molecular dynamics simulations of hydrogen-bond dynamics in liquid water using spherical gaussian wave packets

机译:球形高斯波包液态水中氢键动力学的半antal分子动力学模拟

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摘要

A semiquantal (SQ) molecular dynamics (MD) simulation method using spherical Gaussian wave packets (WPs) is applied to a microscopic analysis of hydrogen-bond (H-bond) exchange dynamics in liquid water. We focus on the molecular jump mechanism of H-bond reorientation dynamics proposed from a classical MD simulation by Laage and Hynes (Science 2006, 311, 832). As a notable quantum effect, broadenings of both the oxygen and hydrogen WPs of jumping water are observed associated with the H-bond switching events. Nonetheless, quantum effects on averaged trajectories of structural parameters measured with respect to the WP centers are rather minor. A 1/f fluctuation of local H-bond number is observed in both SQ and classical simulations. This is obtained straightforwardly from the real-time trajectories, in contrast with the originally found 1/f fluctuation (Sasai et al., J. Chem. Phys. 1992, 96, 3045) of the total potential energies collected at quenched inherent structures. The quantum effects are found to accelerate the relaxation of H-bond number fluctuation, which is reflected in the region near the lower bound of the 1/f behavior in the power spectra. New developments in the implementation of SQMD simulations including all atoms are also described.
机译:使用球形高斯波分组(WPS)的半antal(SQ)分子动力学(MD)模拟方法应用于液态水中氢键(H键)交换动力学的微观分析。我们专注于由Laage and Hynes(Science 2006,311,832)从古典MD模拟提出的H债券重新定向动态的分子跳跃机制。作为值得注意的量子效应,观察到跳跃水的氧气和氢气WPS的扩展与H键开关事件相关联。尽管如此,对WP中心测量的结构参数的平均轨迹的量子效应是相当轻微的。在SQ和经典模拟中观察到局部H键数的1 / f波动。与最初发现的1 / F波动相比(Sasai等,J.Chem.Phys,1992,96,3045),这是从实时轨迹中直接获得的,以淬火固有结构收集的总势能的总潜在能量。发现量子效应加速了H键键数波动的松弛,其在功率谱中的1 / F行为的下部的区域中反射。还描述了在包括所有原子的SQMD模拟中实现的新发展。

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