The detection of ensembles of spins under ambient conditions has revolutionized the biological, chemical and physical sciences through magnetic resonance imaging and nuclear magnetic resonance . Pushing sensing capabilities to the individual-spin level would enable unprecedented applications such as single-molecule structural imaging; however, the weak magnetic fields from single spins are undetectable by conventional far-field resonance techniques . In recent years, there has been a considerable effort to develop nanoscale scanning magnetometers , which are able to measure fewer spins by bringing the sensor in close proximity to its target. The most sensitive of these magnetometers generally require low temperatures for operation, but the ...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
Mapping the positions of single electron spins is a highly desired capability for applications such ...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Magnetic resonance techniques not only provide powerful imaging tools that have revolutionized medic...
Magnetic resonance imaging (MRI) has revolutionized biomedical science by providing non-invasive, th...
We report on imaging of microwave (MW) magnetic fields using a magnetometer based on the electron sp...
We demonstrate quantitative magnetic field mapping with nanoscale resolution, by applying a lock-in ...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Scanning nanomagnetometry based on the electronic spin of the nitrogen vacancy (NV) center in diamon...
Magnetic imaging has been playing central roles not only in fundamental sciences but also in enginee...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
The isolated electronic spin system of the nitrogen-vacancy (NV) centre in diamond offers unique pos...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
Mapping the positions of single electron spins is a highly desired capability for applications such ...
We demonstrate an all-optical method for magnetic sensing of individual molecules in ambient conditi...
Magnetic resonance techniques not only provide powerful imaging tools that have revolutionized medic...
Magnetic resonance imaging (MRI) has revolutionized biomedical science by providing non-invasive, th...
We report on imaging of microwave (MW) magnetic fields using a magnetometer based on the electron sp...
We demonstrate quantitative magnetic field mapping with nanoscale resolution, by applying a lock-in ...
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a promising new system for quantum...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Scanning nanomagnetometry based on the electronic spin of the nitrogen vacancy (NV) center in diamon...
Magnetic imaging has been playing central roles not only in fundamental sciences but also in enginee...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
The isolated electronic spin system of the nitrogen-vacancy (NV) centre in diamond offers unique pos...
The nitrogen-vacancy defect centre in diamond has potential applications in nanoscale electric and m...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
Mapping the positions of single electron spins is a highly desired capability for applications such ...