Publication | Open Access
Interferometry with Photon-Subtracted Thermal Light
17
Citations
35
References
2016
Year
PhotonicsQuantum OpticThermal RadiationEngineeringPhysicsQuantum ProcedureOptical PropertiesThermal StatisticsEnhanced InterferometryInterferometryPhoton StatisticThermal PhysicsOptical SystemsInstrumentationQuantum SensingPhoton-subtracted Thermal LightOptoelectronics
We propose and implement a quantum procedure for enhancing the sensitivity with which one can determine the phase shift experienced by a weak light beam possessing thermal statistics in passing through an interferometer. Our procedure entails subtracting exactly one (which can be generalized to m) photons from the light field exiting an interferometer containing a phase-shifting element in one of its arms. As a consequence of the process of photon subtraction, and somewhat surprisingly, the mean photon number and signal-to-noise ratio of the resulting light field are thereby increased, leading to enhanced interferometry. This method can be used to increase measurement sensitivity in a variety of practical applications, including that of forming the image of an object illuminated only by weak thermal light.
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