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Phonons and related crystal properties from density-functional perturbation theory

Reviews of Modern Physics · 2001 · Vol. 73(2) · pp. 515–562
Stefano BaroniStefano de GironcoliAndrea Dal CorsoPaolo Giannozzi

Abstract

This article reviews the current status of lattice-dynamical calculations in crystals, using density-functional perturbation theory, with emphasis on the plane-wave pseudopotential method. Several specialized topics are treated, including the implementation for metals, the calculation of the response to macroscopic electric fields and their relevance to long-wavelength vibrations in polar materials, the response to strain deformations, and higher-order responses. The success of this methodology is demonstrated with a number of applications existing in the literature.

High-pressure geophysics and materialsAcoustic Wave Resonator TechnologiesSolid-state spectroscopy and crystallographyPhysicsPhononPerturbation (astronomy)Perturbation theory (quantum mechanics)Lattice (music)Density functional theoryPlane waveLattice vibrationCondensed matter physicsVibration
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References
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