首页> 外文期刊>The Journal of Chemical Physics >Fermi resonance switching in KrH(+)Rg and XeH(+)Rg (Rg = Ne, Ar, Kr, and Xe)
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Fermi resonance switching in KrH(+)Rg and XeH(+)Rg (Rg = Ne, Ar, Kr, and Xe)

机译:KRH(+)RG和XEH(+)RG(RG = NE,AR,AR,KR和XE)中的费米共振切换

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摘要

Matrix isolation experiments have been successfully employed to extensively study the infrared spectrum of several proton-bound rare gas complexes. Most of these studies have focused on the spectral signature for the H+ stretch (nu (3)) and its combination bands with the intermolecular stretch coordinate (nu (1)). However, little attention has been paid to the Fermi resonance interaction between the H+ stretch (nu (3)) and H+ bend overtone (2 nu (2)) in the asymmetric proton-bound rare gas dimers, RgH(+)Rg '. In this work, we have investigated this interaction on KrH(+)Rg and XeH(+)Rg with Rg = (Ne, Ar, Kr, and Xe). A multilevel potential energy surface (PES) was used to simulate the vibrational structure of these complexes. This PES is a dual-level comprising of second-order MOller-Plesset perturbation theory and coupled-cluster singles doubles with perturbative triples [CCSD(T)] levels of ab initio theories. We found that when both the combination bands (n nu (1) + nu (3)) and bend overtone 2 nu (2) compete to borrow intensity from the nu (3) band, the latter wins over the former, which then results in the suppression of the n nu (1) + nu (3) bands. The current simulations offer new assignments for the ArH+Xe and KrH+Xe spectra. Complete basis set (CBS) binding energies for these complexes were also calculated at the CCSD(T)/CBS level.
机译:基质隔离实验已成功地用于广泛研究几种质子结合稀有气体配合物的红外光谱。这些研究大多集中在H+伸缩(nu(3))及其与分子间伸缩坐标(nu(1))的组合带的光谱特征上。然而,在不对称质子束缚稀有气体二聚体RgH(+)Rg'中,H+伸缩(nu(3))和H+弯曲泛音(2 nu(2))之间的费米共振相互作用很少受到关注。在这项工作中,我们研究了KrH(+)Rg和XeH(+)Rg与Rg=(Ne、Ar、Kr和Xe)的这种相互作用。用多能级势能面(PES)模拟了这些配合物的振动结构。这是一个由二阶MOller-Plesset微扰理论和耦合的团簇单重态和微扰三重态[CCSD(T)]从头算理论组成的双能级。我们发现,当组合带(n nu(1)+nu(3))和弯曲泛音2 nu(2)竞争从nu(3)带借用强度时,后者胜过前者,从而导致n nu(1)+nu(3)带被抑制。目前的模拟为ArH+Xe和KrH+Xe光谱提供了新的赋值。在CCSD(T)/CBS水平上计算了这些配合物的完整基集结合能。

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