Nuclear spin imaging at the atomic level is essential for the understanding of fundamental biological phenomena and for applications such as drug discovery. The advent of novel nanoscale sensors promises to achieve the long-standing goal of single-protein, high spatial-resolution structure determination under ambient conditions. In particular, quantum sensors based on the spin-dependent photoluminescence of nitrogen-vacancy (NV) centers in diamond have recently been used to detect nanoscale ensembles of external nuclear spins. While NV sensitivity is approaching single-spin levels, extracting relevant information from a very complex structure is a further challenge since it requires not only the ability to sense the magnetic field of an iso...
Nitrogen-vacancy (NV) center in diamond is a promising quantum metrology tool finding applications a...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
Nuclear spin imaging at the atomic level is essential for the understanding of fundamental biologica...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
Methods and techniques to measure and image beyond the state-of-the-art have always been influential...
We present theoretical proposals for two-dimensional nuclear magnetic resonance spectroscopy protoco...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
The detection of nuclear spins using individual electron spins has enabled diverse opportunities in ...
Nuclear magnetic resonance imaging (MRI) at the atomic scale offers exciting prospects for determini...
We experimentally demonstrate the use of a single electronic spin to measure the quantum dynamics of...
Owing to its exceptional spin properties and bright spin-photon interface, the nitrogenvacancy (NV) ...
Nuclear magnetic resonance (NMR) spectroscopy is a physical marvel in which electromagnetic radiatio...
Nuclear magnetic resonance (NMR) spectroscopy and magnetic resonance imaging (MRI) provide non-invas...
In nanoscale metrology, dissipation of the sensor limits its performance. Strong dissipation has a n...
Nitrogen-vacancy (NV) center in diamond is a promising quantum metrology tool finding applications a...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
Nuclear spin imaging at the atomic level is essential for the understanding of fundamental biologica...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
Methods and techniques to measure and image beyond the state-of-the-art have always been influential...
We present theoretical proposals for two-dimensional nuclear magnetic resonance spectroscopy protoco...
Magnetic resonance imaging can characterize and discriminate among tissues using their diverse physi...
The detection of nuclear spins using individual electron spins has enabled diverse opportunities in ...
Nuclear magnetic resonance imaging (MRI) at the atomic scale offers exciting prospects for determini...
We experimentally demonstrate the use of a single electronic spin to measure the quantum dynamics of...
Owing to its exceptional spin properties and bright spin-photon interface, the nitrogenvacancy (NV) ...
Nuclear magnetic resonance (NMR) spectroscopy is a physical marvel in which electromagnetic radiatio...
Nuclear magnetic resonance (NMR) spectroscopy and magnetic resonance imaging (MRI) provide non-invas...
In nanoscale metrology, dissipation of the sensor limits its performance. Strong dissipation has a n...
Nitrogen-vacancy (NV) center in diamond is a promising quantum metrology tool finding applications a...
Nitrogen vacancy (NV) color centers in diamond are a leading modality for both superresolution optic...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...