Publication | Open Access
Quantum measurements of spatial conjugate variables: displacement and tilt of a Gaussian beam
41
Citations
11
References
2006
Year
EngineeringMeasurementOptical TestingQuantum MeasurementQuantum SensingMeasurement ProblemBeam OpticCoherent Gradient SensingQuantum ComputingOptical PropertiesQuantum EntanglementSpatial Conjugate VariablesOptical SystemsDetection Noise ModesQuantum SciencePhotonicsPhysicsTransverse-profile Conjugate VariablesQuantum DecoherenceQuantum OpticQuantum MeasurementsGaussian BeamNatural SciencesApplied PhysicsConjugate VariableOptical Information ProcessingOptical System Analysis
We consider the problem of measurement of optical transverse profile parameters and their conjugate variable. Using multimode analysis, we introduce the concept of detection noise modes. For Gaussian beams, displacement and tilt are a pair of transverse-profile conjugate variables. We experimentally demonstrate the optimal encoding and detection of these variables with a spatial homodyning scheme. Using higher-order spatial mode squeezing, we show the sub-shot-noise measurements for the displacement and tilt of a Gaussian beam.
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