Physical review. B, Condensed matter · 1999 · 95 citations · 18 references
EngineeringMicroscopyFluorescence Excitation SpectroscopyOptical PropertiesNanometrologyOptical SpectroscopyPhotophysical PropertyBiophysicsMaterials SciencePhysicsLow-temperature MicroscopyDefect FormationSingle-molecule DetectionLow-temperature Fluorescence ExcitationIndividual CentersDiamond-like CarbonLaser PhotochemistrySpectroscopyScanning Probe MicroscopyApplied PhysicsMedicineAtomic Fluorescence Spectroscopy
Individual nitrogen-vacancy defect centers have been investigated by low-temperature confocal microscopy and fluorescence excitation spectroscopy. At temperatures below 90 K the fluorescence intensity of individual centers drastically diminishes because of the population of a metastable singlet state in near resonance with the optically excited state. Low-temperature fluorescence excitation spectroscopy down to 5 K becomes possible via deshelving of this state with a second laser source. Surprisingly individual centers reveal low-temperature fluorescence excitation line widths around 0.6 meV, more than two orders of magnitude larger than expected from previous high resolution laser spectroscopy on bulk samples.
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Scanning Confocal Optical Microscopy and Magnetic Resonance on Single Defect Centers
Achim D. Gruber, A. Dräbenstedt, C. Tietz et al. · Science · 1997 · 1.7K citations
Bulk Spin-Resonance Quantum Computation
Neil Gershenfeld, Isaac L. Chuang · Science · 1997 · 1.5K citations
Engineering, Many-body Quantum Physic, Quantum Computation +16
Electron spin resonance in the study of diamond
J.H.N. Loubser, J.A. Van Wyk · Reports on Progress in Physics · 1978 · 585 citations