We report an experimental study of the longitudinal relaxation time ($T_1$) of the electron spin associated with single nitrogen-vacancy (NV) defects hosted in nanodiamonds (ND). We first show that $T_1$ decreases over three orders of magnitude when the ND size is reduced from 100 to 10 nm owing to the interaction of the NV electron spin with a bath of paramagnetic centers lying on the ND surface. We next tune the magnetic environment by decorating the ND surface with Gd$^{3+}$ ions and observe an efficient $T_{1}$-quenching, which demonstrates magnetic noise sensing with a single electron spin. We estimate a sensitivity down to $\approx 14$ electron spins detected within 10 s, using a single NV defect hosted in a 10-nm-size ND. These resul...
Diamond magnetometry is a quantum sensing method involving detection of magnetic resonances with nan...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...
International audienceWe report the experimental study of the temperature dependence of the longitud...
International audienceWe report the experimental study of the temperature dependence of the longitud...
International audienceWe report the experimental study of the temperature dependence of the longitud...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
The nitrogen-vacancy (NV) defect in diamond is an efficient quantum sensor of randomly fluctuating s...
The nitrogen-vacancy (NV) defect in diamond is an efficient quantum sensor of randomly fluctuating s...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The ability to sense nanotelsa magnetic fields with nanoscale spatial resolution is an outstanding t...
Nanodiamonds containing nitrogen-vacancy (NV) centers offer a versatile platform for sensing applica...
Diamond magnetometry is a quantum sensing method involving detection of magnetic resonances with nan...
Diamond magnetometry is a quantum sensing method involving detection of magnetic resonances with nan...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...
International audienceWe report the experimental study of the temperature dependence of the longitud...
International audienceWe report the experimental study of the temperature dependence of the longitud...
International audienceWe report the experimental study of the temperature dependence of the longitud...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
The nitrogen-vacancy (NV) defect in diamond is an efficient quantum sensor of randomly fluctuating s...
The nitrogen-vacancy (NV) defect in diamond is an efficient quantum sensor of randomly fluctuating s...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The ability to sense nanotelsa magnetic fields with nanoscale spatial resolution is an outstanding t...
Nanodiamonds containing nitrogen-vacancy (NV) centers offer a versatile platform for sensing applica...
Diamond magnetometry is a quantum sensing method involving detection of magnetic resonances with nan...
Diamond magnetometry is a quantum sensing method involving detection of magnetic resonances with nan...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...
We present a study of the spin properties of dense layers of near-surface nitrogen-vacancy (NV) cent...