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用于模拟振动分辨的价带和芯能级光电子能谱的电子传播子方法评估

Assessment of Electron Propagator Methods for the Simulation of Vibrationally Resolved Valence and Core Photoionization Spectra.

作者信息

Baiardi A, Paoloni L, Barone V, Zakrzewski V G, Ortiz J V

机构信息

Scuola Normale Superiore , Piazza dei Cavalieri 7, I-56126 Pisa, Italy.

Department of Chemistry and Biochemistry, Auburn University , Auburn, Alabama 36849-5312, United States.

出版信息

J Chem Theory Comput. 2017 Jul 11;13(7):3120-3135. doi: 10.1021/acs.jctc.6b00958. Epub 2017 Jun 9.

Abstract

The analysis of photoelectron spectra is usually facilitated by quantum mechanical simulations. Because of the recent improvement of experimental techniques, the resolution of experimental spectra is rapidly increasing, and the inclusion of vibrational effects is usually mandatory to obtain a reliable reproduction of the spectra. With the aim of defining a robust computational protocol, a general time-independent formulation to compute different kinds of vibrationally resolved electronic spectra has been generalized to also support photoelectron spectroscopy. The electronic structure data underlying the simulation are computed using different electron propagator approaches. In addition to the more standard approaches, a new and robust implementation of the second-order self-energy approximation of the electron propagator based on a transition operator reference (TOEP2) is presented. To validate our implementation, a series of molecules has been used as test cases. The result of the simulations shows that, for ultraviolet photoionization spectra, the more accurate nondiagonal approaches are needed to obtain a reliable reproduction of vertical ionization energies but that diagonal approaches are sufficient for energy gradients and pole strengths. For X-ray photoelectron spectroscopy, the TOEP2 approach, besides being more efficient, is also the most accurate in the reproduction of both vertical ionization energies and vibrationally resolved bandshapes.

摘要

光电子能谱的分析通常借助量子力学模拟得以简化。由于近期实验技术的改进,实验能谱的分辨率迅速提高,通常必须纳入振动效应才能可靠地再现能谱。为了定义一个稳健的计算方案,一种用于计算不同类型振动分辨电子能谱的通用含时公式已被推广,以支持光电子能谱学。模拟所依据的电子结构数据使用不同的电子传播子方法进行计算。除了更标准的方法外,还提出了一种基于跃迁算符参考(TOEP2)的电子传播子二阶自能近似的新的稳健实现方式。为了验证我们的实现方式,一系列分子被用作测试案例。模拟结果表明,对于紫外光电离能谱,需要更精确的非对角方法来可靠地再现垂直电离能,但对角方法对于能量梯度和极点强度就足够了。对于X射线光电子能谱,TOEP2方法除了效率更高外,在再现垂直电离能和振动分辨带形方面也是最准确的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b0d/5732571/418b9cf3375b/emss-74021-f001.jpg

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本文引用的文献

1
Chemical Applications of Zero Kinetic Energy (ZEKE) Photoelectron Spectroscopy.零动能(ZEKE)光电子能谱的化学应用
Angew Chem Int Ed Engl. 1998 Jun 5;37(10):1346-1374. doi: 10.1002/(SICI)1521-3773(19980605)37:10<1346::AID-ANIE1346>3.0.CO;2-H.
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The Virtual Multifrequency Spectrometer: a new paradigm for spectroscopy.虚拟多频光谱仪:光谱学的一种新范式。
Wiley Interdiscip Rev Comput Mol Sci. 2016 Mar/Apr;6(2):86-110. doi: 10.1002/wcms.1238.

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