The crystal lattice is never rigid. Due to temperature, external fields or pressure, the nuclei vibrate, the lattice distorts, and instabilities can induce phase transitions. We review the basic concepts of density-functional perturbation theory, a computational method especially suited to determine from first-principles the microscopic parameters governing such behaviour. Then, we present the additional formalism leading to the following properties of minerals: the infra-red and Raman spectra; the prediction of (meta)stability or instability of a crystalline phase, based on the phonon spectrum; the computation of thermodynamics quantities like the free energy, entropy, specific heat; the atomic temperature factors. For each property, examp...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
Theory and computation play an increasingly important role in the field of mineral physics by allowi...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
ABSTRACT: Recent developments in density functional theory (DFT) methods applicable to studies of la...
We present some applications of a first-principles approach to the study of the vibrational properti...
The term “first-principles calculations” is a synonym for the numerical determination of the electro...
Organic molecular crystals form a condensed solid phase offering a rich vein of physical phenomena w...
The importance of configurational, vibrational, and electronic excitations in crystalline solids of ...
The density-functional perturbation theory approach to lattice-dynamical calculations is extended to...
The understanding of the structure, stability, and response properties of molecular crystals at fini...
The understanding of the structure, stability, and response properties of molecular crystals at fini...
peer reviewedThe understanding of the structure, stability, and response properties of molecular cry...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
Theory and computation play an increasingly important role in the field of mineral physics by allowi...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
This article reviews the current status of lattice-dynamical calculations in crystals, using density...
ABSTRACT: Recent developments in density functional theory (DFT) methods applicable to studies of la...
We present some applications of a first-principles approach to the study of the vibrational properti...
The term “first-principles calculations” is a synonym for the numerical determination of the electro...
Organic molecular crystals form a condensed solid phase offering a rich vein of physical phenomena w...
The importance of configurational, vibrational, and electronic excitations in crystalline solids of ...
The density-functional perturbation theory approach to lattice-dynamical calculations is extended to...
The understanding of the structure, stability, and response properties of molecular crystals at fini...
The understanding of the structure, stability, and response properties of molecular crystals at fini...
peer reviewedThe understanding of the structure, stability, and response properties of molecular cry...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
Theory and computation play an increasingly important role in the field of mineral physics by allowi...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...