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Implementation of the finite field perturbation method in the CRYSTAL program for calculating the dielectric constant of periodic systems

Authors :
Darrigan, C.
Rerat, M.
Mallia, G.
Dovesi, Roberto
Institut des sciences analytiques et de physico-chimie pour l'environnement et les materiaux (IPREM)
Université de Pau et des Pays de l'Adour (UPPA)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Dipartimento di Chimica IFM e NIS-Centre of excellence
Università degli studi di Torino (UNITO)
Source :
Journal of Computational Chemistry, Journal of Computational Chemistry, Wiley, 2003, 24 (11), pp.1305-1312. ⟨10.1002/jcc.10274⟩
Publication Year :
2003
Publisher :
HAL CCSD, 2003.

Abstract

cited By 45; International audience; The finite field approach has been implemented in the periodic ab initio CRYSTAL program and been used for calculating the dielectric constants of crystalline LiF and MgO (FCC structure) and BeO (wurtzite structure). To maintain the periodicity along the applied field direction, a "sawtooth" potential is used in conjunction with a supercell scheme. Supercells four to five times longer than the primitive cell in the direction of the applied field provide well-converged results. The influence of the computational parameters is discussed. An alternative scheme has also been implemented, for inner check, that consists of applying a static electric field to a slab of increasing thickness in the direction orthogonal to the surface; the dielectric response at the center of the slab is shown to converge rapidly to the bulk value evaluated with the sawtooth field. The method is accurate and permits the determination of nonlinear corrections to the dielectric constant. When used in conjunction with the local density approximation (LDA) scheme, it provides for the dielectric constant of the three above-mentioned compounds values close to those recently obtained with a time-dependent density functional theory approach.

Details

Language :
English
ISSN :
01928651 and 1096987X
Database :
OpenAIRE
Journal :
Journal of Computational Chemistry, Journal of Computational Chemistry, Wiley, 2003, 24 (11), pp.1305-1312. ⟨10.1002/jcc.10274⟩
Accession number :
edsair.dedup.wf.001..cf986184c299106149e420f2355cf624
Full Text :
https://doi.org/10.1002/jcc.10274⟩