Laser threshold magnetometry using the negatively charged nitrogen-vacancy (NV−) centre in diamond as a gain medium has been proposed as a technique to dramatically enhance the sensitivity of room-temperature magnetometry. We experimentally explore a diamond-loaded open tunable fibre-cavity system as a potential contender for the realisation of lasing with NV− centres. We observe amplification of the transmission of a cavity-resonant seed laser at 721 nm when the cavity is pumped at 532 nm and attribute this to stimulated emission. Changes in the intensity of spontaneously emitted photons accompany the amplification, and a qualitative model including stimulated emission and ionisation dynamics of the NV− centre captures the dynamics in the ...
International audienceWe demonstrate a cavity-enhanced room-temperature magnetic field sensor based ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Negatively charged nitrogen-vacancy (NV) centers in diamond are promising magnetic field quantum sen...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Nitrogen vacancy (NV) centres are a type of defect in diamond that exhibit a number of interesting p...
Studies were performed to progress the application of nitrogen-vacancy (NV) centres to the sensing o...
Studies were performed to progress the application of nitrogen-vacancy (NV) centres to the sensing o...
We propose a new type of sensor, which uses diamond containing the optically active nitrogen-vacancy...
Among quantum sensors, the single nitrogen-vacancy (NV) defect in diamond has the highest sensitivit...
Negatively charged nitrogen vacancy centers (NV−) in diamond serve as highly sensitive, optically re...
We demonstrate a cavity-enhanced room-temperature magnetic field sensor based on nitrogen-vacancy ce...
The nitrogen-vacancy (NV) centre in diamond is a unique optical defect that is used in many applicat...
International audienceWe demonstrate a cavity-enhanced room-temperature magnetic field sensor based ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Negatively charged nitrogen-vacancy (NV) centers in diamond are promising magnetic field quantum sen...
Stimulated emission is the process fundamental to laser operation, thereby producing coherent photon...
Nitrogen vacancy (NV) centres are a type of defect in diamond that exhibit a number of interesting p...
Studies were performed to progress the application of nitrogen-vacancy (NV) centres to the sensing o...
Studies were performed to progress the application of nitrogen-vacancy (NV) centres to the sensing o...
We propose a new type of sensor, which uses diamond containing the optically active nitrogen-vacancy...
Among quantum sensors, the single nitrogen-vacancy (NV) defect in diamond has the highest sensitivit...
Negatively charged nitrogen vacancy centers (NV−) in diamond serve as highly sensitive, optically re...
We demonstrate a cavity-enhanced room-temperature magnetic field sensor based on nitrogen-vacancy ce...
The nitrogen-vacancy (NV) centre in diamond is a unique optical defect that is used in many applicat...
International audienceWe demonstrate a cavity-enhanced room-temperature magnetic field sensor based ...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...