Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum information processing applications. This is due in large part to the remarkable properties of the nitrogen-vacancy colour centre. From initial demonstrations of room-temperature single photon generation and spin single spin readout and quantum control, diamond nanocrystals are also finding application in magnetometry and biosensing. This review discusses the state of the art in the creation of isolated and small ensembles of optically active diamond defect centres, including nitrogen and nickel-related centres
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
The nitrogen-vacancy (NV) colour centre in diamond is an important physical system for emergent quan...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
We present a high throughput and systematic method for the screening of colour centres in diamond wi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
The nitrogen-vacancy (NV) colour centre in diamond is an important physical system for emergent quan...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
We present a high throughput and systematic method for the screening of colour centres in diamond wi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
The nitrogen-vacancy (NV) colour centre in diamond is an important physical system for emergent quan...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...