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Static and dynamic quantum effects in molecular liquids: A linearized path integral description of water

机译:分子液体中的静态和动态量子效应:水的线性路径积分描述

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摘要

Structure, transport properties, and IR spectra including quantum effects are calculated for a flexible simple point charge model of liquid water. A recently introduced combination of a variational local harmonic description of the liquid potential surface and the classical Wigner approximation for the dynamics is used. The potential energy and interatomic radial distribution functions are in good agreement with accurate results from the literature and are significantly closer to experiment than predictions found from classical theory. The oxygen and hydrogen velocity correlation functions are also calculated, and the corresponding molecular diffusion coefficient is in good accord with existing theoretical estimates including quantum effects. Of most interest, an ab initio quantum correction factor is obtained to correct the far IR spectrum of water. When corrected, a spectrum based on a classical simulation yields results that agree well with experiment. Combined with internal tests of Consistency, these observations indicate that this quite flexible approach will be effective for a variety of molecular problems involving the dynamics of light nuclei.
机译:计算了液态水的灵活简单点电荷模型的结构,传输特性和包括量子效应的IR光谱。最近使用了液体势能表面的局部局部谐波描述和动力学经典Wigner近似的组合。势能和原子间径向分布函数与文献中的准确结果非常吻合,并且比经典理论中的预测更接近于实验。还计算了氧和氢速度的相关函数,并且相应的分子扩散系数与包括量子效应在内的现有理论估计非常吻合。最令人感兴趣的是,获得了从头算起的量子校正因子来校正水的远红外光谱。校正后,基于经典模拟的光谱得出的结果与实验非常吻合。结合内部一致性测试,这些观察结果表明,这种相当灵活的方法对于涉及轻核动力学的各种分子问题将是有效的。

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