On Chip Manipulation of Single Photons from a Diamond Defect
arXiv:1304.4208 · doi:10.1103/PhysRevLett.111.213603
Abstract
Operating reconfigurable quantum circuits with single photon sources is a key goal of photonic quantum information science and technology. We use an integrated waveguide device comprising of directional couplers and a reconfigurable thermal phase controller to manipulate single photons emitted from a chromium related colour centre in diamond. Observation of both a wave-like interference pattern and particle-like sub-Poissionian autocorrelation functions demonstrates coherent manipulation of single photons emitted from the chromium related centre and verifies wave particle duality.
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Cited by in corpus (13)
- Diamond Nanophotonics
- Local and Distributed Quantum Computation
- An electrically injected photon-pair source at room temperature
- Entanglement and quantum superposition induced by a single photon
- Cavity-enhanced measurements of defect spins in silicon carbide
- A bright nanowire single photon source based on SiV centers in diamond
- Coherent perfect absorption of path entangled single photons
- Large baseline optical imaging assisted by single photons and linear quantum optics
- Photonic Quantum Logic with Narrowband Light from Single Atoms
- Single-photon-triggered spin squeezing with decoherence reduction in optomechanics via phase matching
- On-chip resonantly-driven quantum emitter with enhanced coherence
- Localised excitation of a single photon source by a nanowaveguide
- Color-Center-Compatible Freestanding Diamond Directional Couplers for Quantum Photonics