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探究钠掺杂团簇的电子波函数:戴森轨道、各向异性参数和电离截面

Probing Electronic Wave Functions of Sodium-Doped Clusters: Dyson Orbitals, Anisotropy Parameters, and Ionization Cross-Sections.

作者信息

Gunina Anastasia O, Krylov Anna I

机构信息

Department of Chemistry, University of Southern California , Los Angeles, California 90089-0482, United States.

出版信息

J Phys Chem A. 2016 Dec 15;120(49):9841-9856. doi: 10.1021/acs.jpca.6b10098. Epub 2016 Dec 5.

Abstract

We apply high-level ab initio methods to describe the electronic structure of small clusters of ammonia and dimethyl ether (DME) doped with sodium, which provide a model for solvated electrons. We investigate the effect of the solvent and cluster size on the electronic states. We consider both energies and properties, with a focus on the shape of the electronic wave function and the related experimental observables such as photoelectron angular distributions. The central quantity in modeling photoionization experiments is the Dyson orbital, which describes the difference between the initial N-electron and final (N-1)-electron states of a system. Dyson orbitals enter the expression of the photoelectron matrix element, which determines total and partial photoionization cross-sections. We compute Dyson orbitals for the Na(NH) and Na(DME) clusters using correlated wave functions (obtained with equation-of-motion coupled-cluster model for electron attachment with single and double substitutions) and compare them with more approximate Hartree-Fock and Kohn-Sham orbitals. We also analyze the effect of correlation and basis sets on the shapes of Dyson orbitals and the experimental observables.

摘要

我们应用高级从头算方法来描述掺杂钠的氨和二甲醚(DME)小簇的电子结构,这为溶剂化电子提供了一个模型。我们研究了溶剂和簇尺寸对电子态的影响。我们考虑了能量和性质,重点关注电子波函数的形状以及相关的实验可观测量,如光电子角分布。模拟光电离实验的核心量是戴森轨道,它描述了系统初始N电子态和最终(N - 1)电子态之间的差异。戴森轨道进入光电子矩阵元的表达式,该矩阵元决定了总光电离截面和部分光电离截面。我们使用相关波函数(通过单双取代电子附着的运动方程耦合簇模型获得)计算Na(NH)和Na(DME)簇的戴森轨道,并将它们与更近似的哈特里 - 福克和科恩 - 沙姆轨道进行比较。我们还分析了相关性和基组对戴森轨道形状和实验可观测量的影响。

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