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How good are polarizable and flexible models for water: Insights from a many-body perspective

机译:水的可极化和灵活的水模型有多好:来自许多身体的角度的洞察力

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We present a systematic analysis of state-of-the-art polarizable and flexible water models from a many-body perspective, with a specific focus on their ability to represent the Born-Oppenheimer potential energy surface of water from the gas to the liquid phase. Using coupled cluster data in the completed basis set limit as a reference, we examine the accuracy of the polarizable models in reproducing individual many-body contributions to interaction energies and harmonic frequencies of water clusters and compare their performance with that of MB-pol, an explicit many-body model that has been shown to correctly predict the properties of water across the entire phase diagram. Based on these comparisons, we use MB-pol as a reference to analyze the ability of the polarizable models to reproduce the energy landscape of liquid water under ambient conditions. We find that, while correctly reproducing the energetics of minimum-energy structures, the polarizable models examined in this study suffer from inadequate representations of many-body effects for distorted configurations. To investigate the role played by geometry-dependent representations of 1-body charge distributions in reproducing coupled cluster data for both interaction and many-body energies, we introduce a simplified version of MB-pol that adopts fixed atomic charges and demonstrate that the new model retains the same accuracy as the original MB-pol model. Based on the analyses presented in this study, we believe that future developments of both polarizable and explicit many-body models should continue in parallel and would benefit from synergistic efforts aimed at integrating the best aspects of the two theoretical/computational frameworks.
机译:我们对最新的可极化和柔性水模型的系统分析了许多身体的视角,特别关注其将来自气体到液相的出生的oppenheimer潜在能量表面代表水的能力。在完成的基础设定限值中使用耦合群集数据作为参考,我们研究了再现各个多体贡献的可极化模型对水群的交互能量和谐波频率的准确性,并将它们的性能与MB-POL的性能进行比较已被证明可以正确地预测整个相图的水平的许多身体模型。基于这些比较,我们使用MB-POL作为分析可极化模型在环境条件下再现液态水能量景观的能力的参考。我们发现,在正确再现最小能量结构的能量,在本研究中检查的可极化模型遭受了对扭曲配置的许多身体效果的不足。为了调查通过单位电荷分布的几何依赖性表示在再现耦合耦合的互动和许多身体能量的耦合集群数据方面发挥的作用,我们介绍了一种简化版的MB-POL,采用固定的原子收费,并证明新模型保留与原始MB-POL模型相同的准确性。基于本研究中提出的分析,我们认为,可极化和明确的许多机型的未来发展应该并行地继续,并将受益于旨在整合两个理论/计算框架的最佳方面的协同努力。

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