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首页> 外文期刊>The Journal of Chemical Physics >A method to reduce the size of the vibronic basis employed in the simulation of spectra using the multimode vibronic coupling approximation
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A method to reduce the size of the vibronic basis employed in the simulation of spectra using the multimode vibronic coupling approximation

机译:一种使用多模振动耦合近似来减小光谱模拟中所用的振动基础尺寸的方法

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摘要

In the time-independent multimode approach for the determination of vibronic spectra involving strongly coupled electronic states, the equilibrium geometry and normal modes of the reference or precursor state are usually employed as the basis for the multimode expansion. This basis, while easily constructed, is generally ill-suited for determining the eigenstates of the observed species. Employing a more computationally effective basis requires the evaluation of Franck-Condon overlap integrals. Using established generalized Hermite polynomial generating function formalisms, an algorithm is developed that can efficiently determine the enormous requisite number of these overlap integrals. It is found that this flexibility in the choice of multimode basis can significantly reduce the size of the basis needed to obtain converged spectral simulations. The previously reported spectrum of the ethoxy (C2H5O) radical serves as an example of the efficacy of the new technique. (C) 2008 American Institute of Physics.
机译:在用于确定涉及强耦合电子态的振动光谱的非时间独立多模方法中,通常将参考或前体状态的平衡几何构型和正常模作为多模扩展的基础。该基础虽然易于构建,但通常不适合确定所观察物种的本征态。使用更有效的计算基础需要对Franck-Condon重叠积分进行评估。使用建立的广义Hermite多项式生成函数形式,开发了一种算法,该算法可以有效地确定这些重叠积分的巨大必需数量。已经发现,在选择多模基础上的这种灵活性可以显着减小获得会聚光谱仿真所需的基础尺寸。先前报道的乙氧基(C2H5O)自由基光谱是该新技术功效的一个实例。 (C)2008美国物理研究所。

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