We present a technique for addressing single nitrogen-vacancy (NV) center spins in diamond over macroscopic distances using a tunable dielectric microwave cavity. We demonstrate optically detected magnetic resonance (ODMR) for a single negatively charged NV center (NV-) in a nanodiamond (ND) located directly under the macroscopic microwave cavity. By moving the cavity relative to the ND, we record the ODMR signal as a function of position, mapping out the distribution of the cavity magnetic field along one axis. In addition, we argue that our system could be used to determine the orientation of the NV-major axis in a straightforward manner.3 page(s
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The measurement of the microwave field is crucial for many developments in microwave technology and ...
Dynamic nuclear polarization via contact with electronic spins has emerged as an attractive route to...
© 2014 AIP Publishing LLC. We present a technique for addressing single nitrogen-vacancy (NV) center...
Optically detected magnetic resonance (ODMR) in nanodiamond nitrogen-vacancy (NV) centres is usually...
The nitrogen vacancy (NV) center in diamond is promising as an electron spin qubit due to its long-l...
We report on imaging of microwave (MW) magnetic fields using a magnetometer based on the electron sp...
ABSTRACT: We report on the development and utilization of a double split-ring microwave resonator fo...
Empirical thesis.Bibliography: pages 57-63.1. Introduction -- 2. Nitrogen-vacancy colour centres in ...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Magnetic resonance spectroscopy is one of the most powerful spectroscopic tools for obtaining detail...
The nitrogen-vacancy (NV) color center in diamond is an atom-like system in the solid-stat...
2014-07-15A nitrogen‐vacancy (NV) center is a paramagnetic impurity defect existing in the diamond. ...
Nitrogen-vacancy (NV) centers are defects in diamond with unique physical properties that make them ...
We report strong coupling between an ensemble of N impurity (P1) centers in diamond and microwave ph...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The measurement of the microwave field is crucial for many developments in microwave technology and ...
Dynamic nuclear polarization via contact with electronic spins has emerged as an attractive route to...
© 2014 AIP Publishing LLC. We present a technique for addressing single nitrogen-vacancy (NV) center...
Optically detected magnetic resonance (ODMR) in nanodiamond nitrogen-vacancy (NV) centres is usually...
The nitrogen vacancy (NV) center in diamond is promising as an electron spin qubit due to its long-l...
We report on imaging of microwave (MW) magnetic fields using a magnetometer based on the electron sp...
ABSTRACT: We report on the development and utilization of a double split-ring microwave resonator fo...
Empirical thesis.Bibliography: pages 57-63.1. Introduction -- 2. Nitrogen-vacancy colour centres in ...
The nitrogen-vacancy (NV) center in diamond is a solid-state point defect with an electronic spin th...
Magnetic resonance spectroscopy is one of the most powerful spectroscopic tools for obtaining detail...
The nitrogen-vacancy (NV) color center in diamond is an atom-like system in the solid-stat...
2014-07-15A nitrogen‐vacancy (NV) center is a paramagnetic impurity defect existing in the diamond. ...
Nitrogen-vacancy (NV) centers are defects in diamond with unique physical properties that make them ...
We report strong coupling between an ensemble of N impurity (P1) centers in diamond and microwave ph...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
The measurement of the microwave field is crucial for many developments in microwave technology and ...
Dynamic nuclear polarization via contact with electronic spins has emerged as an attractive route to...