Path Integral Simulations of Condensed-Phase Vibrational Spectroscopy.

IF 11.7 1区 化学 Q1 CHEMISTRY, PHYSICAL Annual review of physical chemistry Pub Date : 2024-06-01 DOI:10.1146/annurev-physchem-090722-124705
Stuart C Althorpe
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Abstract

Recent theoretical and algorithmic developments have improved the accuracy with which path integral dynamics methods can include nuclear quantum effects in simulations of condensed-phase vibrational spectra. Such methods are now understood to be approximations to the delocalized classical Matsubara dynamics of smooth Feynman paths, which dominate the dynamics of systems such as liquid water at room temperature. Focusing mainly on simulations of liquid water and hexagonal ice, we explain how the recently developed quasicentroid molecular dynamics (QCMD), fast-QCMD, and temperature-elevated path integral coarse-graining simulations (Te PIGS) methods generate classical dynamics on potentials of mean force obtained by averaging over quantum thermal fluctuations. These new methods give very close agreement with one another, and the Te PIGS method has recently yielded excellent agreement with experimentally measured vibrational spectra for liquid water, ice, and the liquid-air interface. We also discuss the limitations of such methods.

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凝聚态振动光谱的路径积分模拟。
最近的理论和算法发展提高了路径积分动力学方法的精确度,这些方法可以在凝聚相振动光谱模拟中包含核量子效应。这种方法现在被理解为平滑费曼路径的局部经典松原动力学的近似方法,在室温下液态水等系统的动力学中占主导地位。我们主要以液态水和六角冰的模拟为重点,解释了最近开发的准中心分子动力学(QCMD)、快速 QCMD 和温度升高路径积分粗粒度模拟(Te PIGS)方法如何在通过量子热波动平均获得的平均力势上产生经典动力学。这些新方法彼此非常接近,Te PIGS 方法最近与实验测量的液态水、冰和液-气界面的振动光谱非常吻合。我们还讨论了这些方法的局限性。
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来源期刊
CiteScore
28.00
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Physical Chemistry has been published since 1950 and is a comprehensive resource for significant advancements in the field. It encompasses various sub-disciplines such as biophysical chemistry, chemical kinetics, colloids, electrochemistry, geochemistry and cosmochemistry, chemistry of the atmosphere and climate, laser chemistry and ultrafast processes, the liquid state, magnetic resonance, physical organic chemistry, polymers and macromolecules, and others.
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