Light emission from color centers in diamond is being extensively investigated for developing, among other quantum devices, single-photon sources operating at room temperature. By doping diamond with phosphorus, one obtains an n-type semiconductor, which can be exploited for the electrical excitation of color centers. Here, we discuss the optical properties of color centers in phosphorus-doped diamond, especially the silicon-vacancy center, presenting the single-photon emission characteristics and the temperature dependence aiming for electroluminescent single-photon emitting devices
Single photon emitters are core components of quantum technologies. In this work new family of emitt...
Color centers in diamond are promising platforms for quantum technologies. Most color centers in dia...
We report on the systematic characterization of the optical properties of diamond color centers base...
Light emission from color centers in diamond is being extensively investigated for developing, among...
Phosphorus-doped diamond is relevant for applications in sensing,optoelectronics and quantum photoni...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
The silicon vacancy center (SiV) in diamond is promising for future quantum applications due to its ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
A detailed study of the photophysical properties of several novel color centers in chemical vapor de...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
The exploitation of emerging quantum technologies requires efficient fabrication of key building blo...
We performed high-temperature luminescence studies of silicon-vacancy color centers obtained by ion ...
Fluorescent emitters in diamond are considered to be a valuable resource for fields such as quantum ...
Realization of novel quantum technologies requires a control over their fundamental constituent- a s...
Single-photon sources are a fundamental element for developing quantum technologies, and sources bas...
Single photon emitters are core components of quantum technologies. In this work new family of emitt...
Color centers in diamond are promising platforms for quantum technologies. Most color centers in dia...
We report on the systematic characterization of the optical properties of diamond color centers base...
Light emission from color centers in diamond is being extensively investigated for developing, among...
Phosphorus-doped diamond is relevant for applications in sensing,optoelectronics and quantum photoni...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
The silicon vacancy center (SiV) in diamond is promising for future quantum applications due to its ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
A detailed study of the photophysical properties of several novel color centers in chemical vapor de...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
The exploitation of emerging quantum technologies requires efficient fabrication of key building blo...
We performed high-temperature luminescence studies of silicon-vacancy color centers obtained by ion ...
Fluorescent emitters in diamond are considered to be a valuable resource for fields such as quantum ...
Realization of novel quantum technologies requires a control over their fundamental constituent- a s...
Single-photon sources are a fundamental element for developing quantum technologies, and sources bas...
Single photon emitters are core components of quantum technologies. In this work new family of emitt...
Color centers in diamond are promising platforms for quantum technologies. Most color centers in dia...
We report on the systematic characterization of the optical properties of diamond color centers base...