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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Linear and nonlinear Herzberg-Teller vibronic coupling effects. I: Electronic photon echo spectroscopy
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Linear and nonlinear Herzberg-Teller vibronic coupling effects. I: Electronic photon echo spectroscopy

机译:线性和非线性Herzberg-Teller Quibronic耦合效果。 我:电子光子回声光谱

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摘要

The dependence of the transition dipole moment on nuclear coordinates gives rise to non-Condon interaction, signaling that the adiabatic Herzberg-Teller vibronic coupling should be considered. This coupling manifests itself in linear spectroscopy through the breakdown of the mirror image symmetry between the absorption and emission spectra. The stronger the non-Condon interaction, the more pronounced is the absorption-emission asymmetry. A nuclear exponential function is used as a simple model to represent the electronic transition dipole moment, the purpose of which is to avoid the use of eigenstate-approach, convergence issues, and finally be able to extend its applicability to nonlinear spectroscopy inexpensively while accounting for linear and nonlinear non-Condon effects (Herzberg-Teller vibronic coupling). The non-Condon effects on linear and nonlinear spectroscopic signals (e.g. 2-pulse photon echo) are examined. Closed-form expressions of the non-Condon electronic transition dipole moment time correlation functions, accounting for Herzberg-Teller vibronic coupling effects, are derived. It is shown that nonlinear optical signals in time domain such as 2-pulse photon echo signal, conspicuously reflects the degree of the non-Condon interaction (mostly constructive interference in this work) despite the inhomogeneous broadening disguising the homogeneous structural aspects of the molecular system of interest. As such, this study should be useful in relation to extracting structural and dynamical information of condensed molecular systems. Model calculations of absorption and emission spectra and 2-pulse photon echo signals of Herzberg-Teller vibronically coupled systems are presented. The method presented here seems to more efficient computationally, fast and stable compared to the methods which involve perturbation theory and eigenstate expansion.
机译:转变偶极力矩对核坐标的依赖性导致非公路相互作用,信号传染性,即应考虑绝热的赫尔兹伯格替代击球率振动耦合。该耦合通过在吸收和发射光谱之间的镜像对称的击穿中,在线性光谱清除。非公路相互作用越强,吸收 - 减排不对称就越明显。核指数函数用作代表电子转换偶极矩的简单模型,其目的是避免使用特征 - 方法,收敛性问题,并且最终能够廉价地将其适用于非线性光谱,同时计入线性和非线性非公寓效应(Herzberg-Teller Vibrib耦合)。检查对线性和非线性光谱信号(例如2脉冲光子回波)的非沟道效应。导出了非公路电子转换偶极矩时间相关函数的闭合形式表达式,占Herzberg-Teller Vibronic耦合效果的核算。结果表明,尽管分子系统的均匀结构方面不均匀膨胀,但显着地反映了诸如2脉冲光子回波信号的时域中的非线性光学信号(在这项工作中大多是建设性的干扰)。出于兴趣。因此,该研究对于提取冷凝分子系统的结构和动态信息,应该是有用的。提出了赫尔兹伯格 - 柜员改变耦合系统的吸收和发射光谱和2脉冲光子回波信号的模型计算。与涉及扰动理论和特征膨胀的方法相比,这里呈现的方法似乎更有效,快速稳定。

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