Based on thermodynamic principles, we derive expressions quantifying the non-harmonic vibrational behavior of materials, which are rigorous yet easily evaluated from experimentally available data for the thermal expansion coefficient and the phonon density of states. These experimentally-derived quantities are valuable to benchmark first-principles theoretical predictions of harmonic and non-harmonic thermal behaviors using perturbation theory, ab initio molecular-dynamics, or Monte-Carlo simulations. We illustrate this analysis by computing the harmonic, dilational, and anharmonic contributions to the entropy, internal energy, and free energy of elemental aluminum and the ordered compound [Formula: see text] over a wide range of temperatur...
Measurements of elastic and inelastic neutron scatterings from elemental nickel were made at 10, 300...
All phonons in a single crystal of NaBr are measured by inelastic neutron scattering at temperatures...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
Phonons, quantized lattice vibrations, govern most of the thermophysical properties of solid-state m...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
The vibrations of atoms in a crystal (phonons) make up the majority of its entropy (or heat capacity...
The literature on vibrational thermodynamics of materials is reviewed. The emphasis is on metals and...
The literature on vibrational thermodynamics of materials is reviewed. The emphasis is on metals and...
Measurements of elastic and inelastic neutron scatterings from elemental nickel were made at 10, 300...
All phonons in a single crystal of NaBr are measured by inelastic neutron scattering at temperatures...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has ...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
Phonons, quantized lattice vibrations, govern most of the thermophysical properties of solid-state m...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
The vibrations of atoms in a crystal (phonons) make up the majority of its entropy (or heat capacity...
The literature on vibrational thermodynamics of materials is reviewed. The emphasis is on metals and...
The literature on vibrational thermodynamics of materials is reviewed. The emphasis is on metals and...
Measurements of elastic and inelastic neutron scatterings from elemental nickel were made at 10, 300...
All phonons in a single crystal of NaBr are measured by inelastic neutron scattering at temperatures...
Despite the widespread use of silicon in modern technology, its peculiar thermal expansion is not we...