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Theoretical simulations of the vibrational predissociation spectra of H 5 + and D 5 + clusters

机译:H 5 + 和D 5 + 团簇的振动预解离谱的理论模拟

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摘要

In the present study, the effect of the potential energy surface representation on the infrared spectra features of the H 5 + and D 5 + clusters is investigated. For the spectral simulations, we adopted a recently proposed (Sanz-Sanz et al. in Phys Rev A 84:060502-1–4, 2011) two-dimensional adiabatic quantum model to describe the proton-transfer motion between the two H2 or D2 units. The reported calculations make use of a reliable “on the fly" DFT-based potential surface and the corresponding new dipole moment surface. The results of the vibrational predissociation dynamics are compared with earlier and recent experimental data available from mass-selected photodissociation spectroscopy, as well as with previous theoretical calculations based on an analytical ab initio parameterized surfaces. The role of the potential topology on the spectral features is studied, and general trends are discussed.
机译:本文研究了势能表面表征对H 5 + 和D 5 + 团簇红外光谱特征的影响。对于光谱模拟,我们采用了最近提出的(Sanz-Sanz等人,Phys Rev A 84:060502-1–4,2011)二维绝热量子模型来描述两个H2之间的质子转移运动。 sub>或D2 单位。报道的计算利用了可靠的基于DFT的“动态”电位表面和相应的新偶极矩表面,并将振动预解离动力学的结果与质量选择的光解离光谱学的早期和最新实验数据进行了比较,如下所示:以及以前基于理论上从头计算参数化表面进行的理论计算,研究了潜在拓扑在光谱特征上的作用,并讨论了总体趋势。

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