Applied Physics Letters · 1991 · 86 citations · 12 references
Materials ScienceNitrogen ConcentrationsDiamond-like CarbonEngineeringDiamond Thin FilmsCrystalline DefectsCompensation EffectsApplied PhysicsCondensed Matter PhysicsHot-filament TechniqueThin Film Process TechnologyThin FilmsThin Film Processing
Diamond thin films have been doped with nitrogen during growth by the hot-filament technique. For nitrogen concentrations in the films, determined by quantitative secondary ion-mass spectroscopy (SIMS) exceeding about 3×1018 atoms/cc, a decrease of several orders of magnitude is observed in the electrical conductivity for temperatures at or above room temperature. Qualitatively, this decrease is as expected, assuming compensation of existing acceptor states in nominally undoped diamond thin films by substitutional nitrogen which is known to introduce a deep-lying donor level.
12
Optical absorption and luminescence in diamond
John W. Walker · Reports on Progress in Physics · 1979 · 548 citations
Nitrogen and potential<i>n</i>-type dopants in diamond
S. A. Kajihara, Alex Antonelli, J. Bernholc et al. · Physical Review Letters · 1991 · 366 citations
Materials Science, Diamond-like Carbon, Ion Implantation +11
Boron doping of diamond thin films
J. Mort, D. Kuhman, M. A. Machonkin et al. · Applied Physics Letters · 1989 · 93 citations
Materials Science, Materials Engineering, Diamond-like Carbon +15