Kopsavilkums
The LDA-1/2 method evaluates ionization potentials as the energy of the highest occupied molecular orbitals (HOMOs) at half occupation. It has proven to be a viable approach for calculating band gaps of semiconductors. To address its accuracy for finite systems, we apply LDA-1/2 to the atoms and molecules of the GW100 test set. The obtained HOMO energies are validated against CCSD(T) data and the G0W0 approach of many-body perturbation theory. The accuracy of LDA-1/2 and G0W0 is found to be the same, where the latter is computationally much more involved. To get insight into the benefits and limitations of the LDA-1/2 method, we analyze the impact of each assumption made in deriving the methodology.
| Oriģinālvaloda | Angļu |
|---|---|
| Lapas (no-līdz) | 4678-4686 |
| Lapu skaits | 9 |
| Žurnāls | Journal of Chemical Theory and Computation |
| Sējums | 14 |
| Izdevuma numurs | 9 |
| DOIs | |
| Publikācijas statuss | Publicēts - 11 sept. 2018 |
| Ārēji publicēts | Jā |
OECD Zinātnes nozare
- 1.3 Fizika un astronomija
Nospiedums
Uzziniet vairāk par pētniecības tēmām “The LDA-1/2 Method Applied to Atoms and Molecules”. Kopā tie veido unikālu nospiedumu.Citēt šo
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver