Using the DFT supercell method, the BZ sampling error in the formation energy and atomic structure are investigated for vacancy and interstitial defects in diamond and silicon. We find that the k-point sampling errors in the total energy vary considerably depending on the charge state and defect type without systematic cancellation, even for the same size of supercell. The error in the total energy increases with decreasing electronic perturbation of the defect system relative to the perfect bulk; this effect originates in the localization of electronic states due to the symmetry reduction induced by the presence of a defect. The error in the total energy is directly transferred to the formation energy, and consequently changes the thermody...
Charged defects are often studied using density functional theory (DFT). However, the use of periodi...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...
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...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
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 ...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Impurities and defects frequently govern materials properties, with the most prominent example being...
A new method to correct formation energies of charged defects obtained by supercell densityfunctiona...
A new method to correct formation energies of charged defects obtained by supercell densityfunctiona...
The errors arising in ab initio density functional theory studies of semiconductor point defects usi...
Charged defects are often studied using density functional theory (DFT). However, the use of periodi...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...
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...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
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 ...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
The convergence of first-principles supercell calculations for defects in semiconductors is studied ...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
Impurities and defects frequently govern materials properties, with the most prominent example being...
A new method to correct formation energies of charged defects obtained by supercell densityfunctiona...
A new method to correct formation energies of charged defects obtained by supercell densityfunctiona...
The errors arising in ab initio density functional theory studies of semiconductor point defects usi...
Charged defects are often studied using density functional theory (DFT). However, the use of periodi...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...
In solid-state physics/chemistry, a precise understanding of defect formation and its impact on the ...