Extending the spin-dephasing time (T2*) of perfectly aligned nitrogen-vacancy (NV) centers in large-volume chemical vapor deposition (CVD) diamonds leads to enhanced DC magnetic sensitivity. However, T2* of the NV centers is significantly reduced by the stress distribution in the diamond film as its thickness increases. To overcome this issue, we developed a method to mitigate the stress distribution in the CVD diamond films, leading to a T2* extension of the ensemble NV centers. CVD diamond films of approximately 50 \mu m thickness with perfectly aligned NV centers were formed on (111) diamond substrates with misorientation angles of 2.0, 3.7, 5.0, and 10{\deg}. We found that T2* of the ensemble of NV centers increased to approach the valu...
Systems of spins engineered with tunable density and reduced dimensionality enable a number of advan...
The negatively charged nitrogen-vacancy (NV−) center in diamond is an attractive candidate for appli...
The nitrogen-vacancy (NV) color center in diamond has demonstrated great promise in a wide range of ...
Extending the spin-dephasing time (T2*) of perfectly aligned nitrogen-vacancy (NV) centers in large-...
Here we report a method for improving the magnetic field sensitivity of an ensemble of Nitrogen Vaca...
The nitrogen-vacancy (NV) center in diamond is a promising quantum system for magnetometry applicati...
Nitrogen vacancy (NV) center in diamond is expected as a magnetic sensor with high sensitivity at ro...
Nitrogen vacancy (NV) center in diamond is expected as a magnetic sensor with high sensitivity at ro...
A crystal growth technique enabling to control the depth of a single nitro\-gen-vacancy (NV) center ...
International audienceGrowing high-purity diamond containing dense negatively charged nitrogen-vacan...
International audienceIn this work we investigate the properties of negatively charged nitrogen-vaca...
To fully exploit the capability of NV centers in diamond as magnetic sensors and quantum bits, the o...
The combination of the long electron state spin coherence time and the optical coupling of the groun...
International audienceControl of the crystalline orientation of nitrogen-vacancy (NV) defects in dia...
The Nitrogen-Vacancy (NV) color center is a defect of diamond which behaves as an artificial atom ho...
Systems of spins engineered with tunable density and reduced dimensionality enable a number of advan...
The negatively charged nitrogen-vacancy (NV−) center in diamond is an attractive candidate for appli...
The nitrogen-vacancy (NV) color center in diamond has demonstrated great promise in a wide range of ...
Extending the spin-dephasing time (T2*) of perfectly aligned nitrogen-vacancy (NV) centers in large-...
Here we report a method for improving the magnetic field sensitivity of an ensemble of Nitrogen Vaca...
The nitrogen-vacancy (NV) center in diamond is a promising quantum system for magnetometry applicati...
Nitrogen vacancy (NV) center in diamond is expected as a magnetic sensor with high sensitivity at ro...
Nitrogen vacancy (NV) center in diamond is expected as a magnetic sensor with high sensitivity at ro...
A crystal growth technique enabling to control the depth of a single nitro\-gen-vacancy (NV) center ...
International audienceGrowing high-purity diamond containing dense negatively charged nitrogen-vacan...
International audienceIn this work we investigate the properties of negatively charged nitrogen-vaca...
To fully exploit the capability of NV centers in diamond as magnetic sensors and quantum bits, the o...
The combination of the long electron state spin coherence time and the optical coupling of the groun...
International audienceControl of the crystalline orientation of nitrogen-vacancy (NV) defects in dia...
The Nitrogen-Vacancy (NV) color center is a defect of diamond which behaves as an artificial atom ho...
Systems of spins engineered with tunable density and reduced dimensionality enable a number of advan...
The negatively charged nitrogen-vacancy (NV−) center in diamond is an attractive candidate for appli...
The nitrogen-vacancy (NV) color center in diamond has demonstrated great promise in a wide range of ...