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A general time dependent approach to vibronic spectroscopy includingFranck-Condon Herzberg-Teller and Dushinsky effects

机译:振动光谱的一般时间相关方法包括弗兰克·康登赫兹伯格·泰勒和杜申斯基效应

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摘要

An effective time-dependent approach to compute vibrationally resolved optical spectra from first principles is presented for the computation of one-photon electronic spectra induced by either electric or magnetic transition dipoles or by their mutual interaction, namely absorption, emission, and circular dichroism. Particular care has been devoted to generality, modularity, and numerical stability including all the effects that play a role at the harmonic level of approximation, namely Franck-Condon, Herzberg-Teller, and Dushinsky (i.e. mode mixing) effects. The implementation shares the same general framework of our previous time-independent (TI) model, thus allowing an effective integration between both approaches with the consequent enhancement of their respective strengths (e.g. spectrum completeness and straightforward account of temperature effects for the TD route versus band resolution and assignment for the TI route) using a single set of starting data. Implementation of both models in the same general computer program allows comprehensive studies using several levels of electronic structure description together with effective account of environmental effects by atomistic and/or continuum models of different sophistication. A few medium-size molecules (furan, phenyl radical,anthracene, dimethyloxirane, coumarin 339) have been studied in order to fullyvalidate the approach.
机译:为计算由电或磁跃迁偶极子或它们的相互作用(即吸收,发射和圆二色性)引起的单光子电子光谱,提出了一种有效的时变方法,该方法根据第一原理计算振动分解的光谱。特别注意了通用性,模块性和数值稳定性,包括在近似谐波水平上起作用的所有效应,即Franck-Condon,Herzberg-Teller和Dushinsky(即模式混合)效应。该实现与我们之前的时间独立(TI)模型具有相同的通用框架,因此可以在两种方法之间进行有效集成,从而增强各自的强度(例如,频谱完整性和TD路径与频段的温度影响的直接说明) TI路线的分辨率和分配)使用一组起始数据。在同一个通用计算机程序中实现这两种模型,可以使用不同级别的电子结构描述进行全面研究,并通过不同复杂性的原子模型和/或连续模型有效地考虑环境影响。一些中等大小的分子(呋喃,苯基,为了充分研究蒽,二甲基环氧乙烷,香豆素339)验证方法。

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