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A general time-dependent route to Resonance-Raman spectroscopy including Franck-Condon Herzberg-Teller and Duschinsky effects

机译:共振拉曼光谱的一般时间相关路线包括弗兰克-康登赫兹伯格-泰勒和杜申斯基效应

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摘要

We present a new formulation of the time-dependent theory of Resonance-Raman spectroscopy (TD-RR). Particular attention has been devoted to the generality of the framework and to the possibility of including different effects (Duschinsky mixing, Herzberg-Teller contributions). Furthermore, the effects of different harmonic models for the intermediate electronic state are also investigated. Thanks to the implementation of the TD-RR procedure within a general-purpose quantum-chemistry program, both solvation and leading anharmonicity effects have been included in an effective way. The reliability and stability of our TD-RR implementation are first validated against our previously proposed and well-tested time-independent procedure. Practical applications are illustrated with some closed- and open-shell medium-size molecules (anthracene, phenoxyl radical, benzyl radical) and the simulated spectra are compared to the experimental results. More complex and larger systems, not limited to organic compounds, are also feasible, as shown for the case of Tris(bipyridine)ruthenium(II) chloride.
机译:我们提出了共振拉曼光谱(TD-RR)的时变理论的新形式。特别关注该框架的一般性以及包括不同效果的可能性(Duschinsky混合,Herzberg-Teller贡献)。此外,还研究了不同谐波模型对中间电子状态的影响。由于在通用量子化学程序中实施了TD-RR程序,因此有效地包含了溶剂化和领先的非谐效应。 TD-RR实施的可靠性和稳定性首先通过我们先前提出并经过充分测试的与时间无关的程序进行了验证。用一些闭壳和开壳中等大小的分子(蒽,苯氧基,苄基)说明了实际应用,并将模拟光谱与实验结果进行了比较。如三(联吡啶)氯化钌(II)的情况所示,更复杂和更大的系统(不限于有机化合物)也是可行的。

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