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Theoretical assignment of the Clements bands of SO2

机译:SO2 Clements能带的理论分配

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The photoabsorption spectrum of SO2 is theoretically investigated in the energy range 3.56-4.05 eV (28713-32665 cm(-1)). The lowest vibronic levels of the coupled excited electronic states (1(1)A(2)/1(1)B(1)) have been computed using Lanczos diagonalization of the Hamiltonian. The potential energy surfaces and the diabatization scheme used here were already successfully applied to describe the non-adiabatic dynamics of the molecule (Leveque et al., 2013). The important vibronic states, playing a role in the experimental spectrum, have been analyzed according to their nodal pattern to propose the first theoretical assignment of the low-energy part of the spectrum. The Clements bands A-D have been assigned and exhibit contributions from numerous transitions, in the low resolution spectrum. The overlap of these transitions is shown to provide an "accidental" regularity of the Clements bands with respect to their intensities, while their regular energy spacing (similar to 220 cm(-1)) results from a unique series (4,n(2),1). (C) 2015 Published by Elsevier B.V.
机译:理论上研究了能量范围为3.56-4.05 eV(28713-32665 cm(-1))的SO2的光吸收光谱。已使用哈密顿量的Lanczos对角化计算了耦合激发电子态的最低振动水平(1(1)A(2)/ 1(1)B(1))。此处使用的势能面和绝热方案已成功应用于描述分子的非绝热动力学(Leveque等,2013)。根据其节点模式分析了在实验光谱中起作用的重要振动状态,从而提出了光谱中低能部分的第一个理论分配。在低分辨率频谱中,已分配了克莱门茨乐队A-D,并表现出许多过渡的贡献。这些过渡的重叠显示出了克莱门茨谱带相对于其强度的“偶然”规律性,而它们的规则能量间距(类似于220 cm(-1))则来自一个唯一的序列(4,n(2 ),1)。 (C)2015由Elsevier B.V.发布

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