The ability to sensitively detect individual charges under ambient conditions would benefit a wide range of applications across disciplines. However, most current techniques are limited to low-temperature methods such as single-electron transistors1,2, single-electron electrostatic force microscopy and scanning tunnelling microscopy4. Here we introduce a quantum-metrology technique demonstrating precision three-dimensional electric-field measurement using a single nitrogen-vacancy defect centre spin in diamond. An a.c. electric-field sensitivity reaching 202 ± 6 V cm-1 Hz-1/2 has been achieved. This corresponds to the electric field produced by a single elementary charge located at a distance of ∼ 150 nm from our spin sensor with averaging ...
The nitrogen vacancy defect centre in diamond has attracted intense research interest owing to their...
Nitrogen-vacancy centers in diamond allow measurement of enviromental properties such as magnetic an...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
Point defects in diamond known as nitrogen-vacancy centres have been shown to be sensitive to minute...
Electron spins in solids constitute remarkable quantum sensors. Individual defect centers in diamond...
The nitrogen vacancy (NV-) centre has been demonstrated as a versatile and sensitive detector for m...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
The ability to sense nanotelsa magnetic fields with nanoscale spatial resolution is an outstanding t...
The isolated electronic spin system of the nitrogen-vacancy (NV) centre in diamond offers unique pos...
There are diverse interdisciplinary applications for nanoscale-resolution electrometry of elementary...
This paper reviews applications of diamonds for sensing of magnetic and electrical fields, pressure ...
Sensors based on the nitrogen-vacancy defect in diamond are being developed to measure weak magnetic...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Quantum sensors based on spin defects in diamond have recently enabled detailed imaging of nanoscale...
The nitrogen vacancy defect centre in diamond has attracted intense research interest owing to their...
Nitrogen-vacancy centers in diamond allow measurement of enviromental properties such as magnetic an...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
Point defects in diamond known as nitrogen-vacancy centres have been shown to be sensitive to minute...
Electron spins in solids constitute remarkable quantum sensors. Individual defect centers in diamond...
The nitrogen vacancy (NV-) centre has been demonstrated as a versatile and sensitive detector for m...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
The ability to sense nanotelsa magnetic fields with nanoscale spatial resolution is an outstanding t...
The isolated electronic spin system of the nitrogen-vacancy (NV) centre in diamond offers unique pos...
There are diverse interdisciplinary applications for nanoscale-resolution electrometry of elementary...
This paper reviews applications of diamonds for sensing of magnetic and electrical fields, pressure ...
Sensors based on the nitrogen-vacancy defect in diamond are being developed to measure weak magnetic...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Quantum sensors based on spin defects in diamond have recently enabled detailed imaging of nanoscale...
The nitrogen vacancy defect centre in diamond has attracted intense research interest owing to their...
Nitrogen-vacancy centers in diamond allow measurement of enviromental properties such as magnetic an...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...