Homodyne tomography with homodyne-like detection
arXiv:1809.00818 · doi:10.1088/1367-2630/ab4afb
Abstract
We show that data from homodyne-like detection based on photon-number-resolving (PNR) detectors may be effectively exploited to reconstruct quantum states of light using the tomographic reconstruction techniques originally developed for homodyne detection based on photodiodes. Our results open new perspectives to quantum state reconstruction, and pave the way to the use of PNR-based homodyne-like detectors in quantum information science.
5 pages, 5 figures
References in corpus (10)
- Experimental Quantum State Tomography of Optical Fields and Ultrafast Statistical Sampling
- Generation of a superposition of odd photon number states for quantum information networks
- Diluted maximum-likelihood algorithm for quantum tomography
- Biased tomography schemes: an objective approach
- Observing optical coherence across Fock layers with weak-field homodyne detectors
- Hybrid quantum key distribution using coherent states and photon-number-resolving detectors
- Incomplete Detection of Nonclassical Phase-Space Distributions
- Direct measurement of the Wigner function by photon-number-resolving detection
- Measuring nonclassicality with Silicon photomultipliers
- Tomography of a displacement photon counter for discrimination of single-rail optical qubits
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- Assessing a binary quantum channel exploiting a Silicon photomultiplier based hybrid receiver
- Employing weak-field homodyne detection for quantum communications
- On the application of a Silicon photomultiplier-based receiver for binary phase-shift-keying protocols
- Linearly Multiplexed Photon Number Resolving Single-photon Detectors Array
- Boson sampling enhanced quantum chemistry
- Quantum communications in continuous variable systems
- Universal quantum frequency comb measurements by spectral mode-matching
- Asymmetry effects in homodyne and heterodyne measurements: Positive operator-valued measures and asymptotic security of Gaussian-continuous-variable quantum key distribution