We apply the efficient two-optimized references thermodynamic integration using Langevin dynamics method [Phys. Rey. B 96, 224202 (2017)] to calculate highly accurate melting properties of Al and magnetic Ni from first principles. For Ni we carefully investigate the impact of magnetism on the liquid and solid free energies including longitudinal spin fluctuations and the reverse influence of atomic vibrations on magnetic properties. We show that magnetic fluctuations are effectively canceling out for both phases and are thus not altering the predicted melting temperature. For both elements, the generalized gradient approximation (GGA) and the local-density approximation (LDA) are used for the exchange-correlation functional revealing a reli...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
Melting point, particularly metal, is one of the important data for many applications. For developin...
Second nearest neighbor modified embedded-atom method (2NN-MEAM) interatomic potentials are develope...
We apply the efficient two-optimized references thermodynamic integration using Langevin dynamics me...
Applying thermodynamic integration within an ab initio-based free-energy approach is a state-of-the-...
Several research groups have recently reported ab initio calculations of the melting properties of m...
Abstract Accurate prediction of thermodynamic properties requires an extremely accurate representati...
The solid-state region of the Ni-Al phase diagram is predicted from first-principles calculations an...
Two important thermodynamic quantities are bulk solid and liquid free-energy as a function of compos...
We propose an efficient and accurate scheme to calculate the melting point (MP) of materials. This m...
We have calculated the melting temperature of tungsten by two ab initio approaches. The first approa...
Using electronic structure calculations, we conduct an extensive investigation into the Hf-Ta-C syst...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
We investigated, using molecular dynamics, how pressure affects the melting point of the recently th...
Melting temperature calculation has important applications in the theoretical study of phase diagram...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
Melting point, particularly metal, is one of the important data for many applications. For developin...
Second nearest neighbor modified embedded-atom method (2NN-MEAM) interatomic potentials are develope...
We apply the efficient two-optimized references thermodynamic integration using Langevin dynamics me...
Applying thermodynamic integration within an ab initio-based free-energy approach is a state-of-the-...
Several research groups have recently reported ab initio calculations of the melting properties of m...
Abstract Accurate prediction of thermodynamic properties requires an extremely accurate representati...
The solid-state region of the Ni-Al phase diagram is predicted from first-principles calculations an...
Two important thermodynamic quantities are bulk solid and liquid free-energy as a function of compos...
We propose an efficient and accurate scheme to calculate the melting point (MP) of materials. This m...
We have calculated the melting temperature of tungsten by two ab initio approaches. The first approa...
Using electronic structure calculations, we conduct an extensive investigation into the Hf-Ta-C syst...
Multi-principal-component alloys have attracted great interest as a novel paradigm in alloy design, ...
We investigated, using molecular dynamics, how pressure affects the melting point of the recently th...
Melting temperature calculation has important applications in the theoretical study of phase diagram...
Availability of a reliable interatomic potential is one of the major challenges in utilizing molecul...
Melting point, particularly metal, is one of the important data for many applications. For developin...
Second nearest neighbor modified embedded-atom method (2NN-MEAM) interatomic potentials are develope...