We wish to compute potentials for molecular dynamics simulations around a crack tip in iron that would be as precise as possible. The potentials will be constructed with help of our ab-initio electronic calculations code, that relies on the density functional theory and the pseudopotential approach. In this contribution we describe an approach and its new implementation for generating and optimizing the so called environment-reflecting all-electron pseudopotentials. A preliminary example is shown
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
Transferability of norm-conserving pseudopotentials to low-energy electron-molecule scattering proce...
We wish to compute potentials for molecular dynamics simulations around a crack tip in iron that wou...
The electronic structure calculations represent a rigorous tool for predicting and understanding the...
We present the technique and results for finding norm-conserving pseudopotentials and EAM potentials...
We present the technique and results for finding norm-conserving pseudopotentials and EAM potentials...
In the preceding paper, we presented an analytic reformulation of the Phillips-Kleinman (PK) pseudop...
The increasing use of high-throughput density-functional theory (DFT) calculations in the computatio...
AbstractWe present an optimization algorithm to construct pseudopotentials and use it to generate a ...
AbstractWe present an optimization algorithm to construct pseudopotentials and use it to generate a ...
In this thesis, a new ab-initio method for molecular dynamics within the framework of density functi...
The localised version of the density functional based norm-conserving pseudopotential has already be...
In the present work we study numerical solution of the radial Dirac equation in a specific case - ab...
We propose a pseudopotential for the electron-electron Coulomb interaction to improve the efficiency...
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
Transferability of norm-conserving pseudopotentials to low-energy electron-molecule scattering proce...
We wish to compute potentials for molecular dynamics simulations around a crack tip in iron that wou...
The electronic structure calculations represent a rigorous tool for predicting and understanding the...
We present the technique and results for finding norm-conserving pseudopotentials and EAM potentials...
We present the technique and results for finding norm-conserving pseudopotentials and EAM potentials...
In the preceding paper, we presented an analytic reformulation of the Phillips-Kleinman (PK) pseudop...
The increasing use of high-throughput density-functional theory (DFT) calculations in the computatio...
AbstractWe present an optimization algorithm to construct pseudopotentials and use it to generate a ...
AbstractWe present an optimization algorithm to construct pseudopotentials and use it to generate a ...
In this thesis, a new ab-initio method for molecular dynamics within the framework of density functi...
The localised version of the density functional based norm-conserving pseudopotential has already be...
In the present work we study numerical solution of the radial Dirac equation in a specific case - ab...
We propose a pseudopotential for the electron-electron Coulomb interaction to improve the efficiency...
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
A theoretical foundation for the pseudopotential concept has been provided by switching from the Har...
Transferability of norm-conserving pseudopotentials to low-energy electron-molecule scattering proce...