Systematic treatment of displacements, strains, and electric fields in density-functional perturbation theory
Rutgers, The State University of New Jersey
Abstract
The methods of density-functional perturbation theory may be used to calculate various physical response properties of insulating crystals including elastic, dielectric, Born charge, and piezoelectric tensors. These and other important tensors may be defined as second derivatives of an appropriately defined energy functional with respect to atomic-displacement, electric-field, or strain perturbations, or as mixed derivatives with respect to two of these perturbations. The resulting tensor quantities tend to be coupled in complex ways in polar crystals, giving rise to a variety of variant definitions. For example, it is generally necessary to distinguish between elastic tensors defined under different…
Citation impact
- FWCI
- 9.51
- Percentile
- 100%
- References
- 42
Authors
3Topics & keywords
- Piezoelectricity
- Electric displacement field
- Electric field
- Dielectric
- Polar
- Tensor (intrinsic definition)
- Density functional theory
- Perturbation (astronomy)
- Affordable and clean energy