International audienceProducing nanostructures with embedded bright ensembles of lifetime-limited emitters is a challenge with potential high impact in a broad range of physical sciences. In this work, we demonstrate controlled charge transfer to and from dark states exhibiting very long lifetimes in high-density ensembles of SiV centers hosted in a diamond nanopyramid grown by chemical vapor deposition. Further, using a combination of resonant photoluminescence excitation and a frequency-selective persistent hole-burning technique that exploits this charge state transfer, we could demonstrate close to lifetime-limited linewidths from the SiV centers. Such a nanostructure with thousands of bright narrow linewidth emitters in a volume much b...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
The modern technologies of light-emitting devices, light harvesting, and quantum information process...
Color centers in diamond are versatile solid state atomic-like systems suitable for quantum technolo...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
International audienceColour centres in nanodiamonds are an important resource for applications in q...
We study experimentally the statistics of the emission characteristics of NV0 centres in diamond nan...
We study the properties of luminescent diamond particles of different sizes (up to ~1.5 μm) containi...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The practical implementation of many quantum technologies relies on the development of robust and br...
The control of the charge state of nitrogen-vacancy (NV) centers in diamond is of primary importanc...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Color centers in diamond have shown excellent potential for applications in quantum information proc...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
The modern technologies of light-emitting devices, light harvesting, and quantum information process...
Color centers in diamond are versatile solid state atomic-like systems suitable for quantum technolo...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
International audienceColour centres in nanodiamonds are an important resource for applications in q...
We study experimentally the statistics of the emission characteristics of NV0 centres in diamond nan...
We study the properties of luminescent diamond particles of different sizes (up to ~1.5 μm) containi...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The practical implementation of many quantum technologies relies on the development of robust and br...
The control of the charge state of nitrogen-vacancy (NV) centers in diamond is of primary importanc...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Color centers in diamond have shown excellent potential for applications in quantum information proc...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
The modern technologies of light-emitting devices, light harvesting, and quantum information process...