The convergence of first-principles supercell calculations for defects in semiconductors is studied with the vacancy in bulk Si as a test case. The ionic relaxations, defect formation energies, and ionization levels are calculated for supercell sizes of up to 216 atomic sites using several k-point meshes in the Brillouin-zone integrations. The energy dispersion, inherent for the deep defect states in the supercell approximation, and the long range of the ionic relaxations are shown to postpone the convergence so that conclusive results for the physical properties cannot be obtained before the supercell size is of the order of 128–216 atomic sites.Peer reviewe
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Using a density-functional-based tight-binding method we investigate the stability of various vacanc...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
We present a systematic methodology for the accurate calculation of defect structures in supercells,...
In this thesis we apply a variety of computational methods based on density-functional theory (DFT) ...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
The errors arising in ab initio density functional theory studies of semiconductor point defects usi...
Results for supercell-size convergence of formation energies and charge transition levels of vacancy...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
Using first-principles calculations, the electronic structure of the phosphorus-vacancy pair in sili...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Using a density-functional-based tight-binding method we investigate the stability of various vacanc...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
We present a systematic methodology for the accurate calculation of defect structures in supercells,...
In this thesis we apply a variety of computational methods based on density-functional theory (DFT) ...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure a...
The errors arising in ab initio density functional theory studies of semiconductor point defects usi...
Results for supercell-size convergence of formation energies and charge transition levels of vacancy...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
Using first-principles calculations, the electronic structure of the phosphorus-vacancy pair in sili...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Using a density-functional-based tight-binding method we investigate the stability of various vacanc...
Density-functional theory combined with periodic boundary conditions is used to systematically study...