Accurate total-energy calculations are used to study the structures and formation energies of oxygen chains as models for thermal double donors (TDD's) in Si. We find that the first three TDD's (TDD0–TDD2) consist of one four-member ring, with one or two adjacent interstitial O atoms. These metastable TDD's form bistable negative-U systems with the corresponding stable, electrically inactive staggered structures. The TDD3-TDD7 structures are found to consist of four-member rings with adjacent interstitial O atoms at both ends. The TDD's with a central “di-Y-lid” core are found to become energetically competitive with the four-member ring TDD's only for clusters larger than ten O atoms.Peer reviewe
The possible charge states of the silicon divacancy V2 are studied using the local spin-density pseu...
Materials showing negative thermal expansion (NTE) are technologically important and a few transitio...
The interactions of the ‘‘magic’’ Al12Si clusters are studied by first-principles electron-structure...
Accurate total-energy calculations are used to study the structures and formation energies of oxygen...
The electronic and atomic structures of the oxygen chains assigned to late thermal double donors (TD...
The local vibrational modes (LVM’s) of the oxygen chains assigned to thermal double donors (TDD’s) a...
A general kinetic model based on accurate density-functional-theoretic total-energy calculations is ...
The formation kinetics of thermal double donors (TDD’s) is studied by a general kinetic model with p...
Migration, restructuring, and dissociation energies of oxygen complexes in silicon are studied theor...
First-principles methods are used to calculate the structures and local vibrational modes of interst...
The formation and binding energies, the ionization levels, the structures, and the local vibrations ...
We previously reported on ultrashallow thermal donors (USTDs) in carbon-doped oxygen-containing mono...
Using a density-functional-based tight-binding method we investigate the stability of various vacanc...
The structures and energies of model defects consisting of copper and hydrogen in silicon are calcul...
We perform first-principles total-energy calculations to identify the stable and metastable configur...
The possible charge states of the silicon divacancy V2 are studied using the local spin-density pseu...
Materials showing negative thermal expansion (NTE) are technologically important and a few transitio...
The interactions of the ‘‘magic’’ Al12Si clusters are studied by first-principles electron-structure...
Accurate total-energy calculations are used to study the structures and formation energies of oxygen...
The electronic and atomic structures of the oxygen chains assigned to late thermal double donors (TD...
The local vibrational modes (LVM’s) of the oxygen chains assigned to thermal double donors (TDD’s) a...
A general kinetic model based on accurate density-functional-theoretic total-energy calculations is ...
The formation kinetics of thermal double donors (TDD’s) is studied by a general kinetic model with p...
Migration, restructuring, and dissociation energies of oxygen complexes in silicon are studied theor...
First-principles methods are used to calculate the structures and local vibrational modes of interst...
The formation and binding energies, the ionization levels, the structures, and the local vibrations ...
We previously reported on ultrashallow thermal donors (USTDs) in carbon-doped oxygen-containing mono...
Using a density-functional-based tight-binding method we investigate the stability of various vacanc...
The structures and energies of model defects consisting of copper and hydrogen in silicon are calcul...
We perform first-principles total-energy calculations to identify the stable and metastable configur...
The possible charge states of the silicon divacancy V2 are studied using the local spin-density pseu...
Materials showing negative thermal expansion (NTE) are technologically important and a few transitio...
The interactions of the ‘‘magic’’ Al12Si clusters are studied by first-principles electron-structure...