液态水的分布式超极化模型

Christine Neipert, Brian Space
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引用次数: 0

摘要

在最近的一项工作中,提出了一种基于分子动力学(MD)的新理论,该理论提供了一种直接计算带电界面和频振动谱(SFVS)的三阶贡献的方法这种贡献可以用系统总超极化率(β)和偶极子的时间相关函数(TCF)来描述。体系的超极化率[2,3,4,5]很难在飞行中计算-没有合适的非电子结构(ES)技术存在。在这项工作中,基于先前提出的形式主义,开发了液态水的这样一个模型该模型是由从头开始的ES计算参数化和测试的。结果表明,精确地再现气相水分子和水二聚体的超极化张量是可能的。此外,水和水二聚体的超极化导数张量的大部分相关分量也准确拟合,但有些元素不能同时再现。对该模型进行了测试,以评估它是否可以再现三个非零凝聚相水超极化张量分量。结果发现,该模型可以捕获三个相关组成部分中的两个。
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A Distributed Hyperpolarizability Model for Liquid Water
In a recent work a novel, molecular dynamics (MD) based, theory was presented that provides a direct means to calculate the third order contributions to sum frequency vibrational spectroscopy (SFVS) at charged interfaces.[1] This contribution is described by a time correlation function (TCF) of the system's total hyperpolarizability (β) and dipole. A system's hyperpolarizability[2, 3, 4, 5] is difficult to calculate on the fly – no appropriate non-electronic structure (ES) techniques exist. In this work, such a model is developed for liquid water based on a formalism proposed previously.[1] The model is parametrized from and tested against, ab initio ES calculations. It was found that it is possible to reproduce the hyperpolarizability tensor of a gas phase water molecule and a water dimer accurately. Also, most relevant components of the hyperpolarizability derivative tensor of both the water and water dimer were also accurately fit, however, some elements were not able to be simultaneously reproduced. The model was also tested to assess whether or not it could reproduce the three non-zero condensed phase water hyperpolarizability tensor components. It was found that the model could capture two of the three relevant components.
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