The practical implementation of many quantum technologies relies on the development of robust and bright single photon sources that operate at room temperature. The negatively charged silicon-vacancy (SiV-) color center in diamond is a possible candidate for such a single photon source. However, due to the high refraction index mismatch to air, color centers in diamond typically exhibit low photon out-coupling. An additional shortcoming is due to the random localization of native defects in the diamond sample. Here we demonstrate deterministic implantation of Si ions with high conversion efficiency to single SiV- centers, targeted to fabricated nanowires. The co-localization of single SiV- centers with the nanostructures yields a ten times ...
Integrating atomic quantum memories based on color centers in diamond with on-chip photonic devices ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
Optical coupling of an ensemble of silicon-vacancy (SiV) centers to single-crystal diamond microdisk...
Silicon-vacancy (SiV) centers in diamond are bright sources of indistinguishable single photons. We ...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
International audienceAbstract Coherent exchange of single photons is at the heart of applied quantu...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
The negatively-charged silicon-vacancy (SiV−) center in diamond is a bright source of indistinguisha...
The development of material-processing techniques that can be used to generate optical diamond nanos...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Nanodiamonds containing color centers have been attracting attention as a hybrid system with nanopho...
Integrating atomic quantum memories based on color centers in diamond with on-chip photonic devices ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
Optical coupling of an ensemble of silicon-vacancy (SiV) centers to single-crystal diamond microdisk...
Silicon-vacancy (SiV) centers in diamond are bright sources of indistinguishable single photons. We ...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
International audienceAbstract Coherent exchange of single photons is at the heart of applied quantu...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
The negatively-charged silicon-vacancy (SiV−) center in diamond is a bright source of indistinguisha...
The development of material-processing techniques that can be used to generate optical diamond nanos...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Nanodiamonds containing color centers have been attracting attention as a hybrid system with nanopho...
Integrating atomic quantum memories based on color centers in diamond with on-chip photonic devices ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
Optical coupling of an ensemble of silicon-vacancy (SiV) centers to single-crystal diamond microdisk...