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量子波包从头算分子动力学:一种计算包含关键核量子效应的动态平均振动光谱的方法。

Quantum wavepacket ab initio molecular dynamics: an approach for computing dynamically averaged vibrational spectra including critical nuclear quantum effects.

作者信息

Sumner Isaiah, Iyengar Srinivasan S

机构信息

Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, USA.

出版信息

J Phys Chem A. 2007 Oct 18;111(41):10313-24. doi: 10.1021/jp074522d. Epub 2007 Sep 26.

Abstract

We have introduced a computational methodology to study vibrational spectroscopy in clusters inclusive of critical nuclear quantum effects. This approach is based on the recently developed quantum wavepacket ab initio molecular dynamics method that combines quantum wavepacket dynamics with ab initio molecular dynamics. The computational efficiency of the dynamical procedure is drastically improved (by several orders of magnitude) through the utilization of wavelet-based techniques combined with the previously introduced time-dependent deterministic sampling procedure measure to achieve stable, picosecond length, quantum-classical dynamics of electrons and nuclei in clusters. The dynamical information is employed to construct a novel cumulative flux/velocity correlation function, where the wavepacket flux from the quantized particle is combined with classical nuclear velocities to obtain the vibrational density of states. The approach is demonstrated by computing the vibrational density of states of [Cl-H-Cl]-, inclusive of critical quantum nuclear effects, and our results are in good agreement with experiment. A general hierarchical procedure is also provided, based on electronic structure harmonic frequencies, classical ab initio molecular dynamics, computation of nuclear quantum-mechanical eigenstates, and employing quantum wavepacket ab initio dynamics to understand vibrational spectroscopy in hydrogen-bonded clusters that display large degrees of anharmonicities.

摘要

我们引入了一种计算方法来研究包含关键核量子效应的团簇中的振动光谱。该方法基于最近开发的量子波包从头算分子动力学方法,该方法将量子波包动力学与从头算分子动力学相结合。通过结合基于小波的技术和先前引入的与时间相关的确定性采样程序测量,动力学过程的计算效率得到了极大提高(提高了几个数量级),以实现团簇中电子和原子核的稳定、皮秒级长度的量子-经典动力学。利用动力学信息构建了一种新颖的累积通量/速度相关函数,其中来自量子化粒子的波包通量与经典核速度相结合,以获得振动态密度。通过计算包含关键量子核效应的[Cl-H-Cl]-的振动态密度,证明了该方法的有效性,我们 的结果与实验结果吻合良好。还提供了一个基于电子结构谐波频率、经典从头算分子动力学、核量子力学本征态计算以及采用量子波包从头算动力学来理解显示出高度非谐性的氢键团簇中的振动光谱的通用分层程序。

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