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使用基准戴森轨道理论对环戊烯的光电子能谱和电子动量谱进行研究。

Study of the photoelectron and electron momentum spectra of cyclopentene using benchmark Dyson orbital theories.

作者信息

Huang Yan R, Ning Chuan G, Deng Jing K, Deleuze Michael S

机构信息

Department of Physics and Key Laboratory of Atomic and Molecular NanoSciences of MOE, Tsinghua University, Beijing, PR China.

出版信息

Phys Chem Chem Phys. 2008 May 7;10(17):2374-89. doi: 10.1039/b718588j. Epub 2008 Mar 12.

DOI:10.1039/b718588j
PMID:18414729
Abstract

A complete study of the valence electronic structure and related electronic excitation properties of cyclopentene in its C(s) ground state geometry is presented. Ionization spectra obtained from this compound by means of photoelectron spectroscopy (He I and He II) and electron momentum spectroscopy have been analyzed in details up to electron binding energies of 30 eV using one-particle Green's function (1p-GF) theory along with the outer-valence (OVGF) and the third-order algebraic diagrammatic construction [ADC(3)] schemes. The employed geometries derive from DFT/B3LYP calculations in conjunction with the aug-cc-pVTZ basis set, and closely approach the structures inferred from experiments employing microwave spectroscopy or electron diffraction in the gas phase. The 1p-GF/ADC(3) calculations indicate that the orbital picture of ionization breaks down at electron binding energies larger than approximately 17 eV in the inner-valence region, and that the outer-valence 7a' orbital is also subject to a significant dispersion of the ionization intensity over shake-up states. This study confirms further the rule that OVGF pole strengths smaller than 0.85 foretell a breakdown of the orbital picture of ionization at the ADC(3) level. Spherically averaged (e, 2e) electron momentum distributions at an electron impact energy of 1200 eV that were experimentally inferred from an angular analysis of EMS intensities have been interpreted by comparison with accurate simulations employing ADC(3) Dyson orbitals. Very significant discrepancies were observed with momentum distributions obtained from several outer-valence ionization bands using standard Kohn-Sham orbitals.

摘要

本文给出了环戊烯在其C(s)基态几何构型下价电子结构及相关电子激发性质的完整研究。利用单粒子格林函数(1p-GF)理论以及外价层(OVGF)和三阶代数图示构造[ADC(3)]方案,对通过光电子能谱(He I和He II)和电子动量能谱从该化合物获得的电离光谱进行了详细分析,直至电子结合能达到30 eV。所采用的几何构型源自DFT/B3LYP计算与aug-cc-pVTZ基组相结合,并紧密接近从气相中微波光谱或电子衍射实验推断出的结构。1p-GF/ADC(3)计算表明,在内价层区域,当电子结合能大于约17 eV时,电离的轨道图像会失效,并且外价层7a'轨道的电离强度在振激态上也存在显著的分散。本研究进一步证实了OVGF极强度小于0.85预示着在ADC(3)水平上电离轨道图像会失效这一规则。通过与采用ADC(3)戴森轨道的精确模拟进行比较,解释了从EMS强度的角度分析实验推断出的1200 eV电子碰撞能量下的球对称平均(e, 2e)电子动量分布。使用标准科恩-沙姆轨道从几个外价层电离带获得的动量分布观察到了非常显著的差异。

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