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- W2024069532 abstract "Recent progress in the development of superconducting circuits has enabled the realization of interesting sources of nonclassical radiation at microwave frequencies. Here, we discuss field quadrature detection schemes for the experimental characterization of itinerant microwave photon fields and their entanglement correlations with stationary qubits. In particular, we present joint state tomography methods of a radiation field mode and a two-level system. Including the case of finite quantum detection efficiency, we relate measured photon field statistics to generalized quasiprobability distributions and statistical moments for one-channel and two-channel detection. We also present maximum-likelihood methods to reconstruct density matrices from measured field quadrature histograms. Our theoretical investigations are supported by the presentation of experimental data, for which microwave quantum fields beyond the single-photon and Gaussian level have been prepared and reconstructed." @default.
- W2024069532 created "2016-06-24" @default.
- W2024069532 creator A5016075205 @default.
- W2024069532 creator A5016588580 @default.
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- W2024069532 date "2012-09-10" @default.
- W2024069532 modified "2023-10-01" @default.
- W2024069532 title "Characterizing quantum microwave radiation and its entanglement with superconducting qubits using linear detectors" @default.
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- W2024069532 doi "https://doi.org/10.1103/physreva.86.032106" @default.
- W2024069532 hasPublicationYear "2012" @default.
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