Publication | Open Access
Cavity cooling of an optically levitated submicron particle
303
Citations
48
References
2013
Year
EngineeringCavity QedOptomechanical SystemOptomechanicsQuantum SensingQuantum ComputingOptical PropertiesUnique Parameter RegimeCavity CoolingNanophotonicsPhotonicsQuantum SciencePhysicsLight–matter InteractionCavity OptomechanicsOptical Cavity FieldQuantum OpticLevitated Submicron ParticleApplied PhysicsOptical Trapping
The coupling of a levitated submicron particle and an optical cavity field promises access to a unique parameter regime both for macroscopic quantum experiments and for high-precision force sensing. We report a demonstration of such controlled interactions by cavity cooling the center-of-mass motion of an optically trapped submicron particle. This paves the way for a light-matter interface that can enable room-temperature quantum experiments with mesoscopic mechanical systems.
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