Melting temperature calculation has important applications in the theoretical study of phase diagrams and computational materials screenings. In this thesis, we present two new methods, i.e., the improved Widom's particle insertion method and the small-cell coexistence method, which we developed in order to capture melting temperatures both accurately and quickly. We propose a scheme that drastically improves the efficiency of Widom's particle insertion method by efficiently sampling cavities while calculating the integrals providing the chemical potentials of a physical system. This idea enables us to calculate chemical potentials of liquids directly from first-principles without the help of any reference system, which is necessary in t...
Several research groups have recently reported ab initio calculations of the melting properties of m...
Ab initio calculations of the melting properties of copper in the pressure range 0-100 GPa are repor...
We propose a scheme that drastically improves the efficiency of Widom's particle insertion method by...
We propose an efficient and accurate scheme to calculate the melting point (MP) of materials. This m...
Using electronic structure calculations, we conduct an extensive investigation into the Hf-Ta-C syst...
Melting point, particularly metal, is one of the important data for many applications. For developin...
We have calculated the melting temperature of tungsten by two ab initio approaches. The first approa...
The Z method is a popular atomistic simulation method for determining the melting temperature of sol...
In this work, we studied the main methods used in molecular dynamics simulations to obtain the melti...
The interest in refractory materials is increasing rapidly in recent decades due to the development ...
This project calculates the melting temperature as a function of pressure for a system defined by th...
ABSTRACTEnormous progress has been made in high-pressure research over the last decades in both, exp...
TaC, HfC and their solid solutions are promising candidate materials for thermal protection structur...
Applying thermodynamic integration within an ab initio-based free-energy approach is a state-of-the-...
The interface method is a well established approach for predicting melting points of materials using...
Several research groups have recently reported ab initio calculations of the melting properties of m...
Ab initio calculations of the melting properties of copper in the pressure range 0-100 GPa are repor...
We propose a scheme that drastically improves the efficiency of Widom's particle insertion method by...
We propose an efficient and accurate scheme to calculate the melting point (MP) of materials. This m...
Using electronic structure calculations, we conduct an extensive investigation into the Hf-Ta-C syst...
Melting point, particularly metal, is one of the important data for many applications. For developin...
We have calculated the melting temperature of tungsten by two ab initio approaches. The first approa...
The Z method is a popular atomistic simulation method for determining the melting temperature of sol...
In this work, we studied the main methods used in molecular dynamics simulations to obtain the melti...
The interest in refractory materials is increasing rapidly in recent decades due to the development ...
This project calculates the melting temperature as a function of pressure for a system defined by th...
ABSTRACTEnormous progress has been made in high-pressure research over the last decades in both, exp...
TaC, HfC and their solid solutions are promising candidate materials for thermal protection structur...
Applying thermodynamic integration within an ab initio-based free-energy approach is a state-of-the-...
The interface method is a well established approach for predicting melting points of materials using...
Several research groups have recently reported ab initio calculations of the melting properties of m...
Ab initio calculations of the melting properties of copper in the pressure range 0-100 GPa are repor...
We propose a scheme that drastically improves the efficiency of Widom's particle insertion method by...