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首页> 外文期刊>The Journal of Chemical Physics >Vibronic coupling in cyclopentadienyl radical: A method for calculation of vibronic coupling constant and vibronic coupling density analysis
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Vibronic coupling in cyclopentadienyl radical: A method for calculation of vibronic coupling constant and vibronic coupling density analysis

机译:环戊二烯基中的振动耦合:振动耦合常数的计算方法和振动耦合密度分析

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摘要

A method of calculation of vibronic or electron-phonon coupling constant is presented for a Jahn-Teller molecule,cyclopentadienyl radical.It is pointed out that symmetry breaking at degenerate point and violation of Hellmann-Feynman theorem occur in the calculations based on a single Slater determinant.In order to overcome these difficulties,the electronic wave functions are calculated using generalized restricted Hartree-Fock and complete active space self-consistent-field method and the couplings are computed as matrix elements of the electronic operator of the vibronic coupling.Our result agrees well with the experimental and theoretical values.A concept of vibronic coupling density is proposed in order to explain the order of magnitude of the coupling constant from view of the electronic and vibrational structures.It illustrates the local properties of the coupling and enables us to control the interaction.It could open a way to the engineering of vibronic interactions.
机译:提出了一种Jahn-Teller分子环戊二烯基的振动或电子-声子偶合常数的计算方法。指出了基于单个Slater的简并在简并点处的对称性破缺和违反了Hellmann-Feynman定理的情况。为了克服这些困难,使用广义受限Hartree-Fock计算电子波函数,并采用完整的有源空间自洽场方法,并将耦合计算为振动耦合电子算子的矩阵元素。为了从电子和振动结构的角度解释耦合常数的数量级,提出了振动耦合密度的概念,它阐明了耦合的局部性质,使我们能够控制相互作用,这可以为振动相互作用的工程开发开辟道路。

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