Direct observation of sub-binomial light
arXiv:1302.0229 · doi:10.1103/PhysRevLett.110.173602
Abstract
Nonclassical states of light are necessary resources for quantum technologies such as cryptography, computation and the definition of metrological standards. Observing signatures of nonclassicality generally requires inferring either the photon number distribution or a quasi-probability distribution indirectly from a set of measurements. Here, we report an experiment in which the nonclassical character of families of quantum states is assessed by direct inspection of the outcomes from a multiplexed photon counter. This scheme does not register the actual photon number distribution; the statistics of the detector clicks alone serve as a witness of nonclassicality, as proposed by Sperling et al. in Phys. Rev. Lett. 109, 093601 (2012). Our work paves a way for the practical characterisation of increasingly sophisticated states and detectors.
5 pages, 4 figures. References added. Note that Eq. (2) has been corrected in this version from the published manuscript. We are grateful to Arturo Lezama for pointing out the error
References in corpus (13)
- Heralded Generation of Ultrafast Single Photons in Pure Quantum States
- Measuring measurement
- Generation of Optical Coherent State Superpositions by Number-Resolved Photon Subtraction from Squeezed Vacuum
- Experimental nonclassicality of single-photon-added thermal light states
- Direct observation of non-classical photon statistics in parametric downconversion
- Directly estimating non-classicality
- Multi-photon state engineering by heralded interference between single photons and coherent states
- Mapping coherence in measurement via full quantum tomography of a hybrid optical detector
- Photon Number Statistics of Multimode Parametric Down-Conversion
- Probing the negative Wigner function of a pulsed single photon point by point
- Sub-binomial light
- Characterization of the non-classical nature of conditionally prepared single photons
- Characterizing Quantum Properties of a Measurement Apparatus: Insights from the Retrodictive Approach
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- Quantum state engineering by click counting
- Uncovering Quantum Correlations with Time-Multiplexed Click Detection
- Correlation measurements with on-off detectors
- A high dynamic range optical detector for measuring single photons and bright light
- Electron-correlation induced nonclassicallity of light from high-harmonic generation
- High-fidelity spatially resolved multiphoton counting for quantum imaging applications
- Incomplete Detection of Nonclassical Phase-Space Distributions
- Detector-Independent Verification of Quantum Light
- Nonclassicality Phase-Space Functions: More Insight with Fewer Detectors
- Time-Multiplexed Measurements of Nonclassical Light at Telecom Wavelengths
- Direct calibration of click-counting detectors
- Measuring higher-order photon correlations of faint quantum light: a short review
- Quantum Correlations from the Conditional Statistics of Incomplete Data
- Homodyne detection with on-off detector systems
- Neural-network approach for identifying nonclassicality from click-counting data
- Photon counts statistics of squeezed and multi-mode thermal states of light on multiplexed on-off detectors
- Non-classicality and entanglement criteria for bipartite optical fields characterized by quadratic detectors II: Criteria based on probabilities
- Identification of nonclassical properties of light with multiplexing layouts
- Classical-to-quantum crossover in electron on-demand emission
- Sub-Poisson-Binomial Light
- Balanced homodyne detection with on-off detector systems: Observable nonclassicality criteria
- Quantum photonics with active feedback loops
- Detection-device-independent verification of nonclassical light
- Double-heralded generation of two-photon-states by spontaneous four-wave-mixing in the presence of noise
- Dual form of the phase-space classical simulation problem in quantum optics
- Detector-Agnostic Phase-Space Distributions
- Two Copies of the Einstein-Podolsky-Rosen State of Light Lead to Refutation of EPR Ideas
- Photon-number resolution with microwave Josephson photomultipliers
- Experimental retrieval of photon statistics from click detection
- Extended analysis of distillation and purification of squeezed states of light
- Operational definition of quantum correlations of light
- High-resolution coincidence counting system for large-scale photonics applications
- Quantum interferences reconstruction with low homodyne detection efficiency
- Tight inequalities for nonclassicality of measurement statistics
- A room temperature optomechanical squeezer
- Certification of stellar ranks of quantum states of light with a pair of click detectors
- Fundamental limits on determination of photon number statistics from measurements with multiplexed on/off detectors
- Nonclassical photocounting statistics with a single on-off detector
- Beyond conventional photon-number detection with click detectors
- Divide-and-Conquer: An integrated photon-counting scheme
- Latent optical nonclassicality of conditionally prepared states