In order to perform automated calculations of defect and dopant properties in semiconductors and insulators, we developed a software package, Defect and Dopant ab-initio Simulation Package (DASP), which is composed of four modules for calculating: (i) elemental chemical potentials, (ii) defect (dopant) formation energies and transition energy levels, (iii) defect and carrier densities and (iv) carrier dynamics properties of high-density defects. DASP uses the materials genome database for quick determination of competing secondary phases and calculation of the energy above convex hull when calculating the elemental chemical potential that stabilizes compound semiconductors, so it can perform high-throughput prediction of thermodynamic stabi...
We report calculations of the electronic and atomic structures of neutral and charged divacancies in...
We consider the formation energies and stabilities of dopants in semiconductor alloys. We show that ...
The technologically useful properties of a solid often depend upon the types and concentrations of t...
Inevitably, all crystalline materials will contain imperfections that have the ability to modify the...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Understanding and predicting the thermodynamic properties of point defects in semiconductors and ins...
Point defects have a strong impact on the performance of semiconductor and insulator materials used ...
Understanding the most elemental defects in semiconductors is a fundamental step to grasp the countl...
The control of defects, particularly impurities, to tune the concentrations of electrons and holes i...
Crystallographic defects and impurities govern charge transport at low temperature, where the electr...
Kröger–Vink diagrams (KVD) are used to visualize the concentrations of defects across different the...
Les défauts cristallographiques sont à l'origine de nombreuses propriétés d'intérêt pour les matéria...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
Semiconductor science and technology is the art of defect engineering. The theoretical modeling of d...
The continuously growing computing power and the advent of advanced computational algorithms have en...
We report calculations of the electronic and atomic structures of neutral and charged divacancies in...
We consider the formation energies and stabilities of dopants in semiconductor alloys. We show that ...
The technologically useful properties of a solid often depend upon the types and concentrations of t...
Inevitably, all crystalline materials will contain imperfections that have the ability to modify the...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Understanding and predicting the thermodynamic properties of point defects in semiconductors and ins...
Point defects have a strong impact on the performance of semiconductor and insulator materials used ...
Understanding the most elemental defects in semiconductors is a fundamental step to grasp the countl...
The control of defects, particularly impurities, to tune the concentrations of electrons and holes i...
Crystallographic defects and impurities govern charge transport at low temperature, where the electr...
Kröger–Vink diagrams (KVD) are used to visualize the concentrations of defects across different the...
Les défauts cristallographiques sont à l'origine de nombreuses propriétés d'intérêt pour les matéria...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
Semiconductor science and technology is the art of defect engineering. The theoretical modeling of d...
The continuously growing computing power and the advent of advanced computational algorithms have en...
We report calculations of the electronic and atomic structures of neutral and charged divacancies in...
We consider the formation energies and stabilities of dopants in semiconductor alloys. We show that ...
The technologically useful properties of a solid often depend upon the types and concentrations of t...