Quantum-mechanical calculations are used to determine the temperature dependence of the Gibbs energy of vacancy formation in nickel. Existing data reveal a discrepancy between the high-temperature estimates from experiments and low-temperature approximations from density functional theory. Our finite-temperature calculations - which include the effects of magnetism and fully interacting phonon vibrations - demonstrate that this discrepancy is mostly caused by the previously neglected explicit anharmonic contribution.(OLD) MSE-
We investigate phase stability and vacancy formation in fcc Fe-Ni alloys over a broad composition-te...
Vacancy is one of the most frequent defects in metals. We study the impacts of magnetism on vacancy ...
Vacancy properties in concentrated alloys continue to be of great interest because nowadays ab initi...
Quantum-mechanical calculations are used to determine the temperature dependence of the Gibbs energy...
yesThe formation energies of vacancies and their complexes in copper and nickel at zero and finite t...
The vacancy formation thermodynamics in six FCC metals Ag, Au, Cu, Ni, Pd and Pt are determined from...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
International audienceVacancy is one of the most frequent defects in metals. We study the impacts of...
A simple modelling method to extend first-principles electronic structure calculations to finite tem...
We show that a structural energy difference, DeltaE, must include explicit symmetry-breaking changes...
The energetic properties of the divacancy defect in fcc nickel are studied by ab initio calculations...
The effective vacancy–vacancy interaction is considered. Based on the continuum approximation for t...
Measurements of elastic and inelastic neutron scatterings from elemental nickel were made at 10, 300...
Using ab initio calculations, we have analyzed the influence of anharmonic effects on the electronic...
We demonstrate the importance of thermal effects such as temperature-induced electronic, magnetic an...
We investigate phase stability and vacancy formation in fcc Fe-Ni alloys over a broad composition-te...
Vacancy is one of the most frequent defects in metals. We study the impacts of magnetism on vacancy ...
Vacancy properties in concentrated alloys continue to be of great interest because nowadays ab initi...
Quantum-mechanical calculations are used to determine the temperature dependence of the Gibbs energy...
yesThe formation energies of vacancies and their complexes in copper and nickel at zero and finite t...
The vacancy formation thermodynamics in six FCC metals Ag, Au, Cu, Ni, Pd and Pt are determined from...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
International audienceVacancy is one of the most frequent defects in metals. We study the impacts of...
A simple modelling method to extend first-principles electronic structure calculations to finite tem...
We show that a structural energy difference, DeltaE, must include explicit symmetry-breaking changes...
The energetic properties of the divacancy defect in fcc nickel are studied by ab initio calculations...
The effective vacancy–vacancy interaction is considered. Based on the continuum approximation for t...
Measurements of elastic and inelastic neutron scatterings from elemental nickel were made at 10, 300...
Using ab initio calculations, we have analyzed the influence of anharmonic effects on the electronic...
We demonstrate the importance of thermal effects such as temperature-induced electronic, magnetic an...
We investigate phase stability and vacancy formation in fcc Fe-Ni alloys over a broad composition-te...
Vacancy is one of the most frequent defects in metals. We study the impacts of magnetism on vacancy ...
Vacancy properties in concentrated alloys continue to be of great interest because nowadays ab initi...