We optically trap individual nanodiamonds hosting a single Nitrogen Vacancy center and demonstrate a novel route for both non-invasive 3D vectorial magnetometry and sensing of the local density of states in a liquid environment.1 page(s
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Spin-active nanomaterials play a vital role in current and upcoming quantum technologies, such as sp...
We optically trap individual nanodiamonds hosting a single Nitrogen Vacancy center and demonstrate a...
Nitrogen vacancy (NV) centres in diamond are promising elemental blocks for quantum optics, spin-bas...
Using an optical tweezers apparatus, we demonstrate three-dimensional control of nanodiamonds in sol...
Micro-manipulations of nanodiamonds (NDs) containing Nitrogen-Vacancy (NV) centers are here reviewed...
Room temperature optically detected magnetic resonance of a single quantum object with nanoscale pos...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
We report an experimental study of the longitudinal relaxation time ($T_1$) of the electron spin ass...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Sensing of a few unpaired electron spins, such as in metal ions and radicals, is a useful but diffic...
ABSTRACT: We propose a novel biomedical imaging technique, called nanodiamond imaging, that noninvas...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Spin-active nanomaterials play a vital role in current and upcoming quantum technologies, such as sp...
We optically trap individual nanodiamonds hosting a single Nitrogen Vacancy center and demonstrate a...
Nitrogen vacancy (NV) centres in diamond are promising elemental blocks for quantum optics, spin-bas...
Using an optical tweezers apparatus, we demonstrate three-dimensional control of nanodiamonds in sol...
Micro-manipulations of nanodiamonds (NDs) containing Nitrogen-Vacancy (NV) centers are here reviewed...
Room temperature optically detected magnetic resonance of a single quantum object with nanoscale pos...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
We report an experimental study of the longitudinal relaxation time ($T_1$) of the electron spin ass...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Sensing of a few unpaired electron spins, such as in metal ions and radicals, is a useful but diffic...
ABSTRACT: We propose a novel biomedical imaging technique, called nanodiamond imaging, that noninvas...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Spin-active nanomaterials play a vital role in current and upcoming quantum technologies, such as sp...