Spontaneous emission of radiation is one of the fundamental mechanisms by which an excited quantum system returns to equilibrium. For spins, however, spontaneous emission is generally negligible compared to other non-radiative relaxation processes because of the weak coupling between the magnetic dipole and the electromagnetic field. In 1946, Purcell realized that the rate of spontaneous emission can be greatly enhanced by placing the quantum system in a resonant cavity. This effect has since been used extensively to control the lifetime of atoms and semiconducting heterostructures coupled to microwave or optical cavities, and is essential for the realization of high-efficiency single-photon sources. Here we report the application of this i...
Spin ensembles inside a cavity act as light-matter interfaces that play an eminentrole in the develo...
International audienceQuantum information, encoded within the states of quantum systems, represents ...
International audienceQuantum information, encoded within the states of quantum systems, represents ...
Spontaneous emission of radiation is one of the fundamental mechanisms by which an excited quantum s...
International audienceSpontaneous emission of radiation is one of the fundamental mechanisms by whic...
International audienceSpontaneous emission of radiation is one of the fundamental mechanisms by whic...
International audiencePhysical systems reach thermal equilibrium through energy exchange with their ...
International audiencePhysical systems reach thermal equilibrium through energy exchange with their ...
In usual electron-spin resonance (ESR) experiments, the coupling between spins and their electromagn...
In usual electron-spin resonance (ESR) experiments, the coupling between spins and their electromagn...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
We demonstrate the strong coupling between a single electron spin in silicon and a single photon in ...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spin ensembles inside a cavity act as light-matter interfaces that play an eminentrole in the develo...
International audienceQuantum information, encoded within the states of quantum systems, represents ...
International audienceQuantum information, encoded within the states of quantum systems, represents ...
Spontaneous emission of radiation is one of the fundamental mechanisms by which an excited quantum s...
International audienceSpontaneous emission of radiation is one of the fundamental mechanisms by whic...
International audienceSpontaneous emission of radiation is one of the fundamental mechanisms by whic...
International audiencePhysical systems reach thermal equilibrium through energy exchange with their ...
International audiencePhysical systems reach thermal equilibrium through energy exchange with their ...
In usual electron-spin resonance (ESR) experiments, the coupling between spins and their electromagn...
In usual electron-spin resonance (ESR) experiments, the coupling between spins and their electromagn...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
We demonstrate the strong coupling between a single electron spin in silicon and a single photon in ...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spin ensembles inside a cavity act as light-matter interfaces that play an eminentrole in the develo...
International audienceQuantum information, encoded within the states of quantum systems, represents ...
International audienceQuantum information, encoded within the states of quantum systems, represents ...