Kopsavilkums
A method is presented that allows for efficient evaluation of spin-orbit coupling (SOC) in density-functional-theory calculations. In the so-called second-variational scheme, where Kohn-Sham functions obtained in a scalar-relativistic calculation are employed as a basis for the spin-orbit-coupled problem, we introduce a rich set of local orbitals as additional basis functions. Also, relativistic local orbitals can be used. The method is implemented in the all-electron full-potential code exciting. We show that, for materials with strong SOC effects, this approach can reduce the overall basis-set size and thus computational costs tremendously.
| Oriģinālvaloda | Angļu |
|---|---|
| Raksta numurs | 235161 |
| Lapas (no-līdz) | 1-11 |
| Žurnāls | Physical Review B |
| Sējums | 108 |
| Izdevuma numurs | 23 |
| DOIs | |
| Publikācijas statuss | Publicēts - 15 dec. 2023 |
OECD Zinātnes nozare
- 1.3 Fizika un astronomija
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