Quantitative evaluations of the thermodynamic properties of materials – most notably their stability, as measured by the free energy – must take into account the role of thermal and zero-point energy fluctuations. While these effects can easily be estimated within a harmonic approximation, corrections arising from the anharmonic nature of the interatomic potential are often crucial and require computationally costly path integral simulations. Consequently, different approximate frameworks for computing affordable estimates of the anharmonic free energies have been developed over the years. Understanding which of the approximations involved are justified for a given system, and therefore choosing the most suitable method, is complicated by t...
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 ...
Computersimulationen gewinnen zunehmend an Bedeutung für die Entwicklung und Verbesserung von Materi...
International audience; A computational approach is presented to compute anharmonic vibrational stat...
On the basis of the self-consistent phonon theory and the special displacement method, we develop an...
We develop an algorithm for calculating the normal modes of vibration of mechanical systems with con...
We develop an algorithm for calculating the normal modes of vibration of mechanical systems with con...
International audienceHarmoniccalculationsbasedondensity-functionaltheoryaregenerallythemethodofchoi...
[EN] The efficient and accurate calculation of how ionic quantum and thermal fluctuations impact th...
Current methods for free energy calculations in materials science are either computationally expensi...
Diagrammatic many-body methods for computing the energies and other properties of anharmonic vibrati...
The efficient and accurate calculation of how ionic quantum and thermal fluctuations impact the free...
International audience; Two methods are implemented in the Crystal program for the calculation of an...
We derive the Gibbs energy including the anharmonic contribution due to phonon-phonon interactions f...
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 ...
Computersimulationen gewinnen zunehmend an Bedeutung für die Entwicklung und Verbesserung von Materi...
International audience; A computational approach is presented to compute anharmonic vibrational stat...
On the basis of the self-consistent phonon theory and the special displacement method, we develop an...
We develop an algorithm for calculating the normal modes of vibration of mechanical systems with con...
We develop an algorithm for calculating the normal modes of vibration of mechanical systems with con...
International audienceHarmoniccalculationsbasedondensity-functionaltheoryaregenerallythemethodofchoi...
[EN] The efficient and accurate calculation of how ionic quantum and thermal fluctuations impact th...
Current methods for free energy calculations in materials science are either computationally expensi...
Diagrammatic many-body methods for computing the energies and other properties of anharmonic vibrati...
The efficient and accurate calculation of how ionic quantum and thermal fluctuations impact the free...
International audience; Two methods are implemented in the Crystal program for the calculation of an...
We derive the Gibbs energy including the anharmonic contribution due to phonon-phonon interactions f...
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 ...
Computersimulationen gewinnen zunehmend an Bedeutung für die Entwicklung und Verbesserung von Materi...