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首页> 外文期刊>The Journal of Chemical Physics >Vibronic eigenstates and the geometric phase effect in the E-2 '' state of NO3
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Vibronic eigenstates and the geometric phase effect in the E-2 '' state of NO3

机译:在E-2'的NO3状态下的颤音特征和几何相位效应

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摘要

The E-2 '' state of NO3, a prototype for the Jahn-Teller effect, has been an enigma and a challenge for a long time for both experiment and theory. We present a detailed theoretical study of the vibronic quantum dynamics in this electronic state, uncovering the effects of tunnelling, geometric phase, and symmetry. To this end, 45 vibronic levels of NO3 in the E-2 '' state are determined accurately and analyzed thoroughly. The computation is based on a high quality diabatic potential representation of the two-sheeted surface of the E-2 '' state developed by us [W. Eisfeld et al., J. Chem. Phys. 140, 224109 (2014)] and on the multi-configuration time dependent Hartree approach. The vibrational eigenstates of the NO3- anion are determined and analyzed as well to gain a deeper understanding of the symmetry properties of such D-3h symmetric systems. To this end, 61 eigenstates of the NO3- anion ground state are computed using the single sheeted potential surface of the (1)A(1) state published in the same reference quoted above. The assignments of both the vibrational and vibronic levels are discussed. A simple model is proposed to rationalize the computed NO3 spectrum strongly influenced by the Jahn-Teller couplings, the associated geometric phase effect, and the tunnelling. Comparison with the available spectroscopic data is also presented. Published by AIP Publishing.
机译:E-2''NO3的状态,jahn-theerer效应的原型,对于两次实验和理论来说,是一个谜,很长一段时间。我们在这种电子状态下提出了一种详细的振动量子动态的理论研究,揭示了隧道,几何相位和对称性的影响。为此,精确确定E-2'状态下45型振动水平的NO 3的振动水平,并彻底分析。计算基于由US [W.的E-2'状态的两张纸表面的高质量型钝化势表示。 Eisfeld等人。,J.Chem。物理。 140,224109(2014)]以及多配置时间依赖Hartree方法。确定和分析NO3-阴离子的振动特征,并对这种D-3H对称系统的对称性进行更深的了解。为此,使用在上面相同的附图标记的相同附图标记的相同附图标记的(1)A(1)状态的单张纸电位表面来计算NO3-ANION接地状态的61个特征。讨论了振动和振动水平的分配。提出了一种简单的模型,以合理化由Jahn-Teller联轴器,相关的几何相位效应和隧道强烈影响的计算的NO3光谱。还提出了与可用光谱数据的比较。通过AIP发布发布。

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