Electronic structure calculations with GPAW: a real-space implementation of the projector augmented-wave method
CSC - IT Center for Science (Finland) · Technical University of Denmark · +11 more institutions
Abstract
Electronic structure calculations have become an indispensable tool in many areas of materials science and quantum chemistry. Even though the Kohn-Sham formulation of the density-functional theory (DFT) simplifies the many-body problem significantly, one is still confronted with several numerical challenges. In this article we present the projector augmented-wave (PAW) method as implemented in the GPAW program package (https://wiki.fysik.dtu.dk/gpaw) using a uniform real-space grid representation of the electronic wavefunctions. Compared to more traditional plane wave or localized basis set approaches, real-space grids offer several advantages, most notably good computational scalability and systematic…
Citation impact
- FWCI
- 57.55
- Percentile
- 100%
- References
- 125
Authors
36Topics & keywords
- Density functional theory
- Basis set
- Time-dependent density functional theory
- WIEN2k
- Computer science
- Electronic structure
- Wave function
- Basis (linear algebra)