Publication | Open Access
Dual-Path State Reconstruction Scheme for Propagating Quantum Microwaves and Detector Noise Tomography
83
Citations
23
References
2010
Year
Quantum State ReconstructionEngineeringWeak Coherent MicrowavesQuantum MeasurementQuantum SensingMeasurement ProblemQuantum ComputingQuantum EntanglementQuantum ScienceLinear AmplifiersQuantum TomographyPhysicsInverse ProblemsSignal ProcessingQuantum DecoherenceDetector Noise TomographyNatural SciencesQuantum MicrowavesQuantum CommunicationQuantum Error Correction
Quantum state reconstruction of weak propagating microwaves to date requires the use of linear amplifiers. We introduce a theory which, even in the presence of significant amplifier noise, allows one to use these devices for measuring all quadrature moments of propagating quantum microwaves based on cross correlations from a dual-path amplification setup. Simultaneously, the detector noise properties are determined, allowing for tomography. We demonstrate the feasibility of our novel concept by proof-of-principle experiments with classical mixtures of weak coherent microwaves.
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