We demonstrate the fabrication of single-crystalline diamond nanopillars on a (111)-oriented chemical vapor deposited diamond substrate. This crystal orientation offers optimal coupling of nitrogen-vacancy (NV) center emission to the nanopillar mode and is thus advantageous over previous approaches. We characterize single native NV centers in these nanopillars and find one of the highest reported saturated fluorescence count rates in single crystalline diamond in excess of 106 counts per second. We show that our nano-fabrication procedure conserves the preferential alignment as well as the spin coherence of the NVs in our structures. Our results will enable a new generation of highly sensitive probes for NV magnetometry and pave the way tow...
Magnetometry with nitrogen-vacancy (NV) color centers in diamond has gained significant interest amo...
Photonic structures in diamond are key to most of its application in quantum technology. Here, we de...
This work aimed to examine the effects of photonic diamond nanopillar toward enhancing the collectio...
We demonstrate the fabrication of single-crystalline diamond nanopillars on a (111)-oriented chemica...
Nitrogen vacancy NV color centers in diamond are excellent quantum sensors possessing high sensiti...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
Nitrogen-vacancy (NV) color centers in diamond are excellent quantum sensors possessing high sensiti...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The development of material-processing techniques that can be used to generate optical diamond nanos...
Some color centers in diamond can serve as quantum bits which can be manipulated with microwave puls...
Powered by the mutual developments in instrumentation, materials and theoretical descriptions, sens...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Surface micro- and nano-patterning techniques are often employed to enhance the optical interface to...
Magnetometry with nitrogen-vacancy (NV) color centers in diamond has gained significant interest amo...
Photonic structures in diamond are key to most of its application in quantum technology. Here, we de...
This work aimed to examine the effects of photonic diamond nanopillar toward enhancing the collectio...
We demonstrate the fabrication of single-crystalline diamond nanopillars on a (111)-oriented chemica...
Nitrogen vacancy NV color centers in diamond are excellent quantum sensors possessing high sensiti...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
Nitrogen-vacancy (NV) color centers in diamond are excellent quantum sensors possessing high sensiti...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The development of material-processing techniques that can be used to generate optical diamond nanos...
Some color centers in diamond can serve as quantum bits which can be manipulated with microwave puls...
Powered by the mutual developments in instrumentation, materials and theoretical descriptions, sens...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Surface micro- and nano-patterning techniques are often employed to enhance the optical interface to...
Magnetometry with nitrogen-vacancy (NV) color centers in diamond has gained significant interest amo...
Photonic structures in diamond are key to most of its application in quantum technology. Here, we de...
This work aimed to examine the effects of photonic diamond nanopillar toward enhancing the collectio...