Mapping the positions of single electron spins is a highly desired capability for applications such as nanoscale magnetic resonance imaging and quantum network characterization. Here, we demonstrate a method based on rotating an external magnetic field to identify the precise location of single electron spins in the vicinity of a quantum spin sensor. We use a nitrogen-vacancy center in diamond as a quantum sensor and modulate the dipolar coupling to a proximate electron spin in the crystal by varying the magnetic field vector. The modulation of the dipolar coupling contains information on the coordinates of the spin, from which we extract its position with an uncertainty of 0.9\,\AA. We show that the method can be used to locate electron sp...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
The nanoscale localization of individual paramagnetic defects near an electrical circuit is an impor...
Optically detected magnetic resonance (ODMR) is known to allow the ultrasensitive detection of a sma...
The detection of ensembles of spins under ambient conditions has revolutionized the biological, chem...
Magnetic resonance spectroscopy is one of the most important tools in chemical and bio-medical resea...
Nuclear spin imaging at the atomic level is essential for the understanding of fundamental biologica...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
We experimentally demonstrate an approach to scale up quantum devices by harnessing spin defects in ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
We demonstrate quantitative magnetic field mapping with nanoscale resolution, by applying a lock-in ...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
We experimentally demonstrate a simple and robust protocol for the detection of weak radio-frequency...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
The nanoscale localization of individual paramagnetic defects near an electrical circuit is an impor...
Optically detected magnetic resonance (ODMR) is known to allow the ultrasensitive detection of a sma...
The detection of ensembles of spins under ambient conditions has revolutionized the biological, chem...
Magnetic resonance spectroscopy is one of the most important tools in chemical and bio-medical resea...
Nuclear spin imaging at the atomic level is essential for the understanding of fundamental biologica...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
We experimentally demonstrate an approach to scale up quantum devices by harnessing spin defects in ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
We demonstrate quantitative magnetic field mapping with nanoscale resolution, by applying a lock-in ...
The ability to sensitively detect individual charges under ambient conditions would benefit a wide r...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
We experimentally demonstrate a simple and robust protocol for the detection of weak radio-frequency...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
The nanoscale localization of individual paramagnetic defects near an electrical circuit is an impor...
Optically detected magnetic resonance (ODMR) is known to allow the ultrasensitive detection of a sma...