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用于芯能级结合能的方法的基准。

Benchmark of Methods for Core-Level Binding Energies.

机构信息

Department of Chemistry, Duke University, Durham, North Carolina27708, United States.

Department of Applied Physics, Aalto University, Otakaari 1, FI-02150Espoo, Finland.

出版信息

J Chem Theory Comput. 2022 Dec 13;18(12):7570-7585. doi: 10.1021/acs.jctc.2c00617. Epub 2022 Nov 2.

Abstract

The approximation has recently gained increasing attention as a viable method for the computation of deep core-level binding energies as measured by X-ray photoelectron spectroscopy. We present a comprehensive benchmark study of different methodologies (starting point optimized, partial and full eigenvalue-self-consistent, Hedin shift, and renormalized singles) for molecular inner-shell excitations. We demonstrate that all methods yield a unique solution and apply them to the CORE65 benchmark set and ethyl trifluoroacetate. Three schemes clearly outperform the other methods for absolute core-level energies with a mean absolute error of 0.3 eV with respect to experiment. These are partial eigenvalue self-consistency, in which the eigenvalues are only updated in the Green's function, single-shot calculations based on an optimized hybrid functional starting point, and a Hedin shift in the Green's function. While all methods reproduce the experimental relative binding energies well, the eigenvalue self-consistent schemes and the Hedin shift yield with mean absolute errors <0.2 eV the best results.

摘要

该近似方法最近作为一种可行的方法,用于计算 X 射线光电子能谱测量的深芯层结合能,受到了越来越多的关注。我们对不同的方法(起始点优化、部分和全本征值自洽、Hedin 位移和重整化单电子)进行了分子内壳层激发的综合基准研究。我们证明了所有方法都给出了唯一的解,并将其应用于 CORE65 基准集和三氟乙酸乙酯。三种方案在绝对芯层能量方面明显优于其他方法,与实验相比平均绝对误差为 0.3 eV。这些方案是部分本征值自洽,其中本征值仅在格林函数中更新;基于优化混合泛函起始点的单次计算;以及格林函数中的 Hedin 位移。虽然所有方法都很好地再现了实验的相对结合能,但本征值自洽方案和 Hedin 位移的平均绝对误差<0.2 eV,得出了最好的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b54/9753590/dfab4ba46da6/ct2c00617_0002.jpg

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