Comparing self-consistent GW and vertex corrected G0W0 (G0W0Γ) accuracy for molecular ionization potentials

Fuente: arXiv
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Main Authors: Wen, Ming, Abraham, Vibin, Harsha, Gaurav, Shee, Avijit, Whaley, K. Birgitta, Zgid, Dominika
Format: Preprint
Published: 2023
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author Wen, Ming
Abraham, Vibin
Harsha, Gaurav
Shee, Avijit
Whaley, K. Birgitta
Zgid, Dominika
author_facet Wen, Ming
Abraham, Vibin
Harsha, Gaurav
Shee, Avijit
Whaley, K. Birgitta
Zgid, Dominika
contents We test the performance of self-consistent GW and several representative implementations of vertex corrected G0W0 (G0W0Γ). These approaches are tested on benchmark data sets covering full valence spectra (first ionization potentials and some inner valence shell excitations). For small molecules, when comparing against state of the art wave function techniques, our results show that performing full self-consistency in the GW scheme either systematically outperforms vertex corrected G0W0 or gives results of at least the same quality. Moreover, the G0W0Γ results in additional computational cost when compared to G0W0 or self-consistent GW and the G0W0Γ dependency on the starting mean-filed solution is frequently larger than the magnitude of the vertex correction. Consequently, for molecular systems self-consistent GW performed on imaginary axis and then followed by modern analytical continuation techniques offers a more reliable approach to make predictions of IP spectra.
format Preprint
id arxiv_https___arxiv_org_abs_2311_12209
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Comparing self-consistent GW and vertex corrected G0W0 (G0W0Γ) accuracy for molecular ionization potentials
Wen, Ming
Abraham, Vibin
Harsha, Gaurav
Shee, Avijit
Whaley, K. Birgitta
Zgid, Dominika
Chemical Physics
Materials Science
We test the performance of self-consistent GW and several representative implementations of vertex corrected G0W0 (G0W0Γ). These approaches are tested on benchmark data sets covering full valence spectra (first ionization potentials and some inner valence shell excitations). For small molecules, when comparing against state of the art wave function techniques, our results show that performing full self-consistency in the GW scheme either systematically outperforms vertex corrected G0W0 or gives results of at least the same quality. Moreover, the G0W0Γ results in additional computational cost when compared to G0W0 or self-consistent GW and the G0W0Γ dependency on the starting mean-filed solution is frequently larger than the magnitude of the vertex correction. Consequently, for molecular systems self-consistent GW performed on imaginary axis and then followed by modern analytical continuation techniques offers a more reliable approach to make predictions of IP spectra.
title Comparing self-consistent GW and vertex corrected G0W0 (G0W0Γ) accuracy for molecular ionization potentials
topic Chemical Physics
Materials Science
url https://arxiv.org/abs/2311.12209