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All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies.

Publication ,  Journal Article
Yao, Y; Golze, D; Rinke, P; Blum, V; Kanai, Y
Published in: Journal of chemical theory and computation
March 2022

We present an accurate computational approach to calculate absolute K-edge core electron excitation energies as measured by X-ray absorption spectroscopy. Our approach employs an all-electron Bethe-Salpeter equation (BSE) formalism based on GW quasiparticle energies (BSE@GW) using numeric atom-centered orbitals (NAOs). The BSE@GW method has become an increasingly popular method for the computation of neutral valence excitation energies of molecules. However, it was so far not applied to molecular K-edge excitation energies. We discuss the influence of different numerical approximations on the BSE@GW calculation and employ in our final setup (i) exact numeric algorithms for the frequency integration of the GW self-energy, (ii) G0W0 and BSE starting points with ∼50% of exact exchange, (iii) the Tamm-Dancoff approximation and (iv) relativistic corrections. We study the basis set dependence and convergence with common Gaussian-type orbital and NAO basis sets. We identify the importance of additional spatially confined basis functions as well as of diffuse augmenting basis functions. The accuracy of our BSE@GW method is assessed for a benchmark set of small organic molecules, previously used for benchmarking the equation-of-motion coupled cluster method [Peng et al., J. Chem. Theory Comput., 2015, 11, 4146], as well as the medium-sized dibenzothiophene (DBT) molecule. Our BSE@GW results for absolute excitation energies are in excellent agreement with the experiment, with a mean average error of only 0.63 eV for the benchmark set and with errors <1 eV for the DBT molecule.

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Published In

Journal of chemical theory and computation

DOI

EISSN

1549-9626

ISSN

1549-9618

Publication Date

March 2022

Volume

18

Issue

3

Start / End Page

1569 / 1583

Related Subject Headings

  • Chemical Physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0803 Computer Software
  • 0601 Biochemistry and Cell Biology
  • 0307 Theoretical and Computational Chemistry
 

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Yao, Y., Golze, D., Rinke, P., Blum, V., & Kanai, Y. (2022). All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies. Journal of Chemical Theory and Computation, 18(3), 1569–1583. https://doi.org/10.1021/acs.jctc.1c01180
Yao, Yi, Dorothea Golze, Patrick Rinke, Volker Blum, and Yosuke Kanai. “All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies.Journal of Chemical Theory and Computation 18, no. 3 (March 2022): 1569–83. https://doi.org/10.1021/acs.jctc.1c01180.
Yao Y, Golze D, Rinke P, Blum V, Kanai Y. All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies. Journal of chemical theory and computation. 2022 Mar;18(3):1569–83.
Yao, Yi, et al. “All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies.Journal of Chemical Theory and Computation, vol. 18, no. 3, Mar. 2022, pp. 1569–83. Epmc, doi:10.1021/acs.jctc.1c01180.
Yao Y, Golze D, Rinke P, Blum V, Kanai Y. All-Electron BSE@GW Method for K-Edge Core Electron Excitation Energies. Journal of chemical theory and computation. 2022 Mar;18(3):1569–1583.
Journal cover image

Published In

Journal of chemical theory and computation

DOI

EISSN

1549-9626

ISSN

1549-9618

Publication Date

March 2022

Volume

18

Issue

3

Start / End Page

1569 / 1583

Related Subject Headings

  • Chemical Physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0803 Computer Software
  • 0601 Biochemistry and Cell Biology
  • 0307 Theoretical and Computational Chemistry