The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed for pressures up to 48 GPa with density-functional perturbation theory within both the local-density and the generalized-gradient approximations. Thermoelastic properties in the quasiharmonic approximation, including Gr\ufcneisen mode parameters (Part I), and dielectric properties, including the lattice contribution and the Raman spectra (Part II) are derived from the phonon calculations and compared to results of experiments and previous computations
Lattice dynamics studies are important for the proper characterization of materials, since these stu...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
In this work, we study theoretically the elastic properties of the orthorhombic (Pnma) high-pressure...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Using the variational density-functional perturbation theory, we investigate the dynamical and diele...
We investigate structural, electronic, dynamical, and dielectric properties of zircon (ZrSiO4) withi...
Zirconia (ZrO2) is a most important substance in materials science and technology due to its wide-ra...
We report a detailed survey of the calculated bulk properties of zirconia using GGA and meta-GGA fun...
International audienceRaman spectra of nanometric tetragonal zirconia have been recorded under high ...
We have carried out ab initio hybrid Hartree-Fock/Density Functional Theory simulations to determine...
Using first-principles density functional calculations, the effect of high pressures, up to 20 GPa,...
In this paper, the full-potential linearized augmented plane-wave (LAPW) method within the generaliz...
We have performed first-principles calculations of the electronic structure of ZnO, and applied the...
Methods for theoretically evaluating lattice dynamics, anharmonic effects and related optical proper...
The structure, the elastic properties, and the Raman frequencies of the zircon and reidite polymorph...
Lattice dynamics studies are important for the proper characterization of materials, since these stu...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
In this work, we study theoretically the elastic properties of the orthorhombic (Pnma) high-pressure...
The structural parameters and phonon spectra of the five known polymorphs of zirconia are computed f...
Using the variational density-functional perturbation theory, we investigate the dynamical and diele...
We investigate structural, electronic, dynamical, and dielectric properties of zircon (ZrSiO4) withi...
Zirconia (ZrO2) is a most important substance in materials science and technology due to its wide-ra...
We report a detailed survey of the calculated bulk properties of zirconia using GGA and meta-GGA fun...
International audienceRaman spectra of nanometric tetragonal zirconia have been recorded under high ...
We have carried out ab initio hybrid Hartree-Fock/Density Functional Theory simulations to determine...
Using first-principles density functional calculations, the effect of high pressures, up to 20 GPa,...
In this paper, the full-potential linearized augmented plane-wave (LAPW) method within the generaliz...
We have performed first-principles calculations of the electronic structure of ZnO, and applied the...
Methods for theoretically evaluating lattice dynamics, anharmonic effects and related optical proper...
The structure, the elastic properties, and the Raman frequencies of the zircon and reidite polymorph...
Lattice dynamics studies are important for the proper characterization of materials, since these stu...
We describe an empirical, self-consistent, orthogonal tight-binding model for zirconia, which allows...
In this work, we study theoretically the elastic properties of the orthorhombic (Pnma) high-pressure...