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Norbornane: An investigation into its valence electronic structure using electron momentum spectroscopy, and density functional and Green's function theories

机译:降冰片烷:利用电子动量光谱,密度泛函和格林函数理论研究其价电子结构

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摘要

We report on the results of an exhaustive study of the valence electronic structure of norbornane (C7H12), up to binding energies of 29 eV. Experimental electron momentum spectroscopy and theoretical Green's function and density functional theory approaches were all utilized in this investigation. A stringent comparison between the electron momentum spectroscopy and theoretical orbital momentum distributions found that, among all the tested models, the combination of the Becke-Perdew functional and a polarized valence basis set of triple-zeta quality provides the best representation of the electron momentum distributions for all of the 20 valence orbitals of norbornane. This experimentally validated quantum chemistry model was then used to extract some chemically important properties of norbornane. When these calculated properties are compared to corresponding results from other independent measurements, generally good agreement is found. Green's function calculations with the aid of the third-order algebraic diagrammatic construction scheme indicate that the orbital picture of ionization breaks down at binding energies larger than 22.5 eV. Despite this complication, they enable insights within 0.2 eV accuracy into the available ultraviolet photoemission and newly presented (e,2e) ionization spectra, except for the band associated with the 1a(2)(-1) one-hole state, which is probably subject to rather significant vibronic coupling effects, and a band at similar to25 eV characterized by a momentum distribution of "s-type" symmetry, which Green's function calculations fail to reproduce. We note the vicinity of the vertical double ionization threshold at similar to26 eV. (C) 2004 American Institute of Physics.
机译:我们报告了对降冰片烷(C7H12)的价电子结构进行详尽研究的结果,直至结合能为29 eV。实验电子动量谱和理论格林函数和密度泛函理论方法都用于这项研究。电子动量谱和理论轨道动量分布之间的严格比较发现,在所有测试模型中,Becke-Perdew泛函和三价态质量的极化价基集的组合提供了电子动量分布的最佳表示降冰片烷的所有20个价轨道。然后,该经过实验验证的量子化学模型用于提取降冰片烷的一些重要化学性质。将这些计算出的特性与其他独立测量的相应结果进行比较时,通常会发现很好的一致性。借助三阶代数图解构造方案进行的格林函数计算表明,电离的轨道图在结合能大于22.5 eV时分解。尽管存在这种复杂性,但它们仍能以0.2 eV的精度洞察可用的紫外线光发射和新出现的(e,2e)电离光谱,但与1a(2)(-1)单孔态有关的谱带除外受到相当显着的振动耦合作用,并且具有一个类似于25 eV的谱带,其特征是“ s型”对称的动量分布,格林函数的计算无法重现。我们注意到垂直双电离阈值的附近接近26 eV。 (C)2004美国物理研究所。

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