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Spectral characterization of hydrogen bond network dynamics in water

机译:水中氢键网络动力学的光谱表征

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Some computational aspects of the characterization of the complex hydrogen bond network dynamics using power spectral analysis are discussed. In the case of hydrogen-bonded liquids, the tagged molecule potential energy is shown to be a useful quantity for capturing the behavior of the networked liquid on different lengths and time scales. The computation of the tagged potential energy for rigid-body effective pair potentials, such as the TIP5P-E and SPC-E models, is discussed. The more structured nature of the TIP5P-E potential, compared to the SPC/E potential, shows up as differences in the high-frequency librational band of the power spectra of the tagged molecule potential energies. The static distributions of the tagged molecule potential energies are also more structured in the case of TIP5P-E, rather than SPC/E, water. The overall behavior of the key power spectral features remains the same in both the models. The possibility of detailed characterization of the power spectrum, and therefore of the underlying dynamics, using a model-based parametric fitting procedure for the power spectra is also discussed. We show that a parametric fitting can allow one to test alternative models of the dynamics underlying the liquid state dynamics. (c) 2006 American Institute of Physics.
机译:讨论了使用功率谱分析表征复杂氢键网络动力学的一些计算方面。在氢键液体的情况下,标记分子势能显示为有用的量,可用于捕获网络化液体在不同长度和时间范围内的行为。讨论了诸如TIP5P-E和SPC-E模型之类的刚体有效对势的标记势能的计算。与SPC / E电位相比,TIP5P-E电位更结构化的性质表现为标记分子势能的功率谱的高频自由带中的差异。在TIP5P-E而不是SPC / E水的情况下,标记分子势能的静态分布也更加结构化。在两个模型中,关键功率谱特征的总体行为均相同。还讨论了使用功率谱的基于模型的参数拟合程序对功率谱进行详细表征的可能性,并因此对基础动力学进行了表征。我们表明,参数拟合可以使人们测试液态动力学背后的动力学的替代模型。 (c)2006年美国物理研究所。

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