Publication | Open Access
Proposal for an Optomechanical Microwave Sensor at the Subphoton Level
57
Citations
47
References
2015
Year
Thermal FluctuationsPhotonic SensorQuantum PhotonicsEngineeringOptomechanical SystemLow Energy ContentOptomechanicsOptical PropertiesOptical SensorIntrinsic QuantumLevitated OptomechanicsNanophotonicsPhotonicsQuantum SciencePhysicsSubphoton LevelMicrowave MeasurementCavity OptomechanicsMicrowave PhotonicsOptomechanical CrystalsApplied PhysicsQuantum Photonic DeviceOptoelectronics
Because of their low energy content, microwave signals at the single-photon level are extremely challenging to measure. Guided by recent progress in single-photon optomechanics and hybrid optomechanical systems, we propose a multimode optomechanical transducer that can detect intensities significantly below the single-photon level via adiabatic transfer of the microwave signal to the optical frequency domain where the measurement is then performed. The influence of intrinsic quantum and thermal fluctuations is also discussed.
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