Hydrogen Incorporation in Diamond: The Vacancy-Hydrogen Complex
Abstract
We report the identification of the vacancy-hydrogen complex in single crystal diamond synthesized by chemical vapor deposition. The S=1 defect is observed by electron paramagnetic resonance in the negative charge state. The hydrogen atom is bonded to one of the carbon atoms neighboring the vacancy. Unlike the analogous defect in silicon, no symmetry lowering reconstruction occurs between the three remaining carbon dangling orbitals. The very small measured hydrogen hyperfine interaction is explained by dipolar coupling between the hydrogen and the unpaired electron probability density delocalized on the three equivalent carbon neighbors.
- Publication:
-
Physical Review Letters
- Pub Date:
- March 2004
- DOI:
- Bibcode:
- 2004PhRvL..92m5502G
- Keywords:
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- 61.72.Ji;
- 76.30.Mi;
- 81.05.Uw;
- 85.40.Ry;
- Point defects and defect clusters;
- Color centers and other defects;
- Carbon diamond graphite;
- Impurity doping diffusion and ion implantation technology