The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coherence times under ambient conditions, enabling applications in quantum information processing and sensing. NV centers near the surface can have strong interactions with external materials and spins, enabling new forms of nanoscale spectroscopy. However, NV spin coherence degrades within 100 nm of the surface, suggesting that diamond surfaces are plagued with ubiquitous defects. Prior work on characterizing near-surface noise has primarily relied on using NV centers themselves as probes; while this has the advantage of exquisite sensitivity, it provides only indirect information about the origin of the noise. Here we demonstrate that surface sp...
Quantum sensing using optically addressable atomic-scale defects, such as the nitrogen--vacancy (NV)...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The nitrogen-vacancy (NV) defect center in diamond has demonstrated great capability for nanoscale m...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
A single nitrogen-vacancy (NV) center is used to sense individual, as well as small ensembles of, el...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Quantum sensing using optically addressable atomic-scale defects, such as the nitrogen--vacancy (NV)...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The nitrogen-vacancy (NV) defect center in diamond has demonstrated great capability for nanoscale m...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
The nitrogen-vacancy (NV) center in diamond exhibits spin-dependent fluorescence and long spin coher...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
We present measurements of spin relaxation times (T1, T1ρ, T2) on very shallow (≲5 nm) nitrogen-vac...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
A single nitrogen-vacancy (NV) center is used to sense individual, as well as small ensembles of, el...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Quantum sensing using optically addressable atomic-scale defects, such as the nitrogen--vacancy (NV)...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The nitrogen-vacancy (NV) defect center in diamond has demonstrated great capability for nanoscale m...