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Compact diode-laser-pumped quantum light source based on four-wave mixing in hot rubidium vapor
57
Citations
23
References
2012
Year
Quantum PhotonicsEngineeringLaser ScienceCompact Diode-laser-pumped SystemFour-wave MixingUltracold AtomHot Rubidium VaporOptical PumpingQuantum SciencePhotonicsLaser PumpingPhysicsAtomic PhysicsMaximum SqueezingQuantum OpticQuantum TechnologyApplied PhysicsQuantum Photonic DeviceOptoelectronics
Using a nondegenerate four-wave mixing process in hot rubidium vapor, we demonstrate a compact diode-laser-pumped system for the generation of intensity-difference squeezing down to 8 kHz with a maximum squeezing of -7 dB. To the best of our knowledge, this is the first demonstration of kilohertz-level intensity-difference squeezing using a semiconductor laser as the pump source. This scheme is of interest for experiments involving atomic ensembles, quantum communications, and precision measurements. The diode-laser-pumped system would extend the range of possible applications for squeezing due to its low cost, ease of operation, and ease of integration.
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