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The Bethe-Salpeter Equation Formalism: From Physics to Chemistry
- Source :
- Journal of Physical Chemistry Letters, Journal of Physical Chemistry Letters, American Chemical Society, 2020, 11 (17), pp.7371-7382. ⟨10.1021/acs.jpclett.0c01875⟩, Journal of Physical Chemistry Letters, 2020, 11 (17), pp.7371-7382. ⟨10.1021/acs.jpclett.0c01875⟩
- Publication Year :
- 2020
- Publisher :
- arXiv, 2020.
-
Abstract
- The Bethe-Salpeter equation (BSE) formalism is steadily asserting itself as a new efficient and accurate tool in the ensemble of computational methods available to chemists in order to predict optical excitations in molecular systems. In particular, the combination of the so-called $GW$ approximation, giving access to reliable ionization energies and electron affinities, and the BSE formalism, able to model UV/Vis spectra, has shown to provide accurate singlet excitation energies with a typical error of $0.1$--$0.3$ eV. With a similar computational cost as time-dependent density-functional theory (TD-DFT), BSE is able to provide an accuracy on par with the most accurate global and range-separated hybrid functionals without the unsettling choice of the exchange-correlation functional, resolving further known issues (\textit{e.g.}, charge-transfer excitations). In this \textit{Perspective} article, we provide a historical overview of BSE, with a particular focus on its condensed-matter roots. We also propose a critical review of its strengths and weaknesses in different chemical situations.<br />Comment: 13 pages, 3 figures, Perspective review article
- Subjects :
- Physics
Chemical Physics (physics.chem-ph)
Condensed Matter - Materials Science
Bethe–Salpeter equation
010304 chemical physics
Strongly Correlated Electrons (cond-mat.str-el)
Materials Science (cond-mat.mtrl-sci)
FOS: Physical sciences
Vis spectra
Molecular systems
Computational Physics (physics.comp-ph)
01 natural sciences
Hybrid functional
[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry
Condensed Matter - Strongly Correlated Electrons
Formalism (philosophy of mathematics)
Theoretical physics
Physics - Chemical Physics
0103 physical sciences
General Materials Science
Physical and Theoretical Chemistry
Ionization energy
010306 general physics
Physics - Computational Physics
Excitation
Subjects
Details
- ISSN :
- 19487185
- Database :
- OpenAIRE
- Journal :
- Journal of Physical Chemistry Letters, Journal of Physical Chemistry Letters, American Chemical Society, 2020, 11 (17), pp.7371-7382. ⟨10.1021/acs.jpclett.0c01875⟩, Journal of Physical Chemistry Letters, 2020, 11 (17), pp.7371-7382. ⟨10.1021/acs.jpclett.0c01875⟩
- Accession number :
- edsair.doi.dedup.....123197e1aa5c66b6acf5554752b9becc
- Full Text :
- https://doi.org/10.48550/arxiv.2006.09440