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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Theoretical study of the A~30~+ ← X~10~+ and B~31 ← X~10~+ transitions in the Cd-rare gas van der Waals molecules
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Theoretical study of the A~30~+ ← X~10~+ and B~31 ← X~10~+ transitions in the Cd-rare gas van der Waals molecules

机译:稀有镉范德华分子中A〜30〜+←X〜10〜+和B〜31←X〜10〜+跃迁的理论研究

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摘要

Excitation spectra arising from A~30~+ ← X~10~+ and B~31 ← X~10~+ electronic transitions in the Cd-rare gas (RG) van der Waals molecules are calculated using newly obtained theoretical potential curves for these species. In the molecular structure calculations, Cd~(20+) and RG~(8+) cores are simulated by energy-consistent pseudopotentials which also account for scalar-relativistic effects and spin-orbit (SO) interaction within the valence shell. Potential energies in the ΛS coupling scheme have been obtained by means of ab initio complete-active-space multiconfiguration self consistent-field (CASSCF)/complete-active-space multireference second-order perturbation theory (CASPT2) calculations with a total 28 correlated electrons, while the SO matrix has been computed in a reduced CI space restricted to the CASSCF level. The final Ω potential curves are obtained by diagonalization of the modified SO matrix (its diagonal elements before diagonalization substituted for the corresponding CASPT2 eigen-energies). The spectroscopic parameters for the ground and several excited states of the Cd-RG complexes deduced from the calculated potential curves are in quite reasonable agreement with available experimental data. In addition, the radial Schrodinger equation for nuclear motion was solved numerically with the calculated potentials to evaluate the corresponding vibrational levels and radial wavefunctions. The latter have been used in the calculation of the appropriate Franck-Condon factors to yield information on relative intensities of the vibrational bands of the Cd-RG complexes. The theoretical vibrational progressions are discussed in the context of experimental spectra.
机译:使用新获得的理论电势曲线计算了Cd稀有气体(RG)范德华分子中A〜30〜+←X〜10〜+和B〜31←X〜10〜+电子跃迁的激发光谱种类。在分子结构计算中,Cd〜(20+)和RG〜(8+)核是通过能量一致的伪势来模拟的,这些伪势还考虑了标价相对论效应和价壳内的自旋轨道(SO)相互作用。 ΛS耦合方案中的势能是通过从头算起具有完整的28个相关电子的完全有效空间多配置自洽场(CASSCF)/完全有效空间多参考二阶扰动理论(CASPT2)计算获得的,而SO矩阵是在仅限于CASSCF级别的缩减CI空间中计算的。最终的Ω电位曲线是通过修改后的SO矩阵的对角化获得的(对角化之前其对角元素替换了相应的CASPT2本征能)。由计算出的电势曲线推导出的Cd-RG配合物的基态和几种激发态的光谱参数与可用的实验数据相当合理。此外,利用计算出的电位数值求解了用于核运动的径向薛定inger方程,以评估相应的振动水平和径向波函数。后者已用于计算适当的弗兰克-康登因子,以得出有关Cd-RG络合物振动带的相对强度的信息。在实验光谱的背景下讨论了理论振动进程。

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