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Dynamics of water probed with vibrational echo correlation spectroscopy

机译:振动回波相关光谱技术探测水的动力学

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Vibrational echo correlation spectroscopy experiments on the OD stretch of dilute HOD in H2O are used to probe the structural dynamics of water. A method is demonstrated for combining correlation spectra taken with different infrared pulse bandwidths (pulse durations), making it possible to use data collected from many experiments in which the laser pulse properties are not identical. Accurate measurements of the OD stretch anharmonicity (162 cm(-1)) are presented and used in the data analysis. In addition, the recent accurate determination of the OD vibrational lifetime (1.45 ps) and the time scale for the production of vibrational relaxation induced broken hydrogen bond "photoproducts" (similar to2 ps) aid in the data analysis. The data are analyzed using time dependent diagrammatic perturbation theory to obtain the frequency time correlation function (FTCF). The results are an improved FTCF compared to that obtained previously with vibrational echo correlation spectroscopy. The experimental data and the experimentally determined FTCF are compared to calculations that employ a polarizable water model (SPC-FQ) to calculate the FTCF. The SPC-FQ derived FTCF is much closer to the experimental results than previously tested nonpolarizable water models which are also presented for comparison. (C) 2004 American Institute of Physics.
机译:利用H2O中稀释的HOD的OD拉伸的振动回波相关光谱实验研究水的结构动力学。演示了一种将不同红外脉冲带宽(脉冲持续时间)获得的相关光谱进行组合的方法,从而有可能使用从许多实验中收集的数据,其中激光脉冲特性不相同。 OD拉伸非谐性(162 cm(-1))的准确测量值被提出并用于数据分析。此外,最近对OD振动寿命(1.45 ps)的准确测定和产生振动弛豫引起的断裂氢键“光产物”(类似于2 ps)的时间尺度有助于数据分析。使用时间相关图解扰动理论分析数据,以获得频率时间相关函数(FTCF)。与先前使用振动回波相关光谱法获得的结果相比,结果是改进的FTCF。将实验数据和实验确定的FTCF与采用极化水模型(SPC-FQ)来计算FTCF的计算结果进行比较。与先前测试的非极化水模型相比,SPC-FQ衍生的FTCF与实验结果更加接近,后者也被提出用于比较。 (C)2004年美国物理研究所。

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