
arXiv: 2106.07365
handle: 11696/72916 , 2318/1816585
A systematic photoluminescence (PL) investigation of the spectral emission properties of individual optical defects fabricated in diamond upon ion implantation and annealing is reported. Three spectral lines at 620, 631, and 647 nm are identified and attributed to the SnV center due to their occurrence in the PL spectra of the very same single‐photon emitting defects. It is shown that the relative occurrence of the three spectral features can be modified by oxidizing the sample surface following thermal annealing. The relevant emission properties of each class of individual emitters, including the excited state emission lifetime and the emission intensity saturation parameters are reported.
single-photon source, Quantum Physics, Condensed Matter - Materials Science, diamond, single-photon sources, charge state, ion implantation, quantum optics, materials processing, Materials Science (cond-mat.mtrl-sci), FOS: Physical sciences, QC350-467, Optics. Light, TA1501-1820, quantum, charge, diamond, annealing, ion implantation, Applied optics. Photonics, Quantum Physics (quant-ph)
single-photon source, Quantum Physics, Condensed Matter - Materials Science, diamond, single-photon sources, charge state, ion implantation, quantum optics, materials processing, Materials Science (cond-mat.mtrl-sci), FOS: Physical sciences, QC350-467, Optics. Light, TA1501-1820, quantum, charge, diamond, annealing, ion implantation, Applied optics. Photonics, Quantum Physics (quant-ph)
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