Photon number correlation for quantum enhanced imaging and sensing
arXiv:1612.08103 · doi:10.1088/2040-8986/aa7b27
Abstract
In this review we present the potentialities and the achievements of the use of non-classical photon number correlations in twin beams (TWB) states for many applications, ranging from imaging to metrology. Photon number correlations in the quantum regime are easy to be produced and are rather robust against unavoidable experimental losses, and noise in some cases, if compared to the entanglement, where loosing one photon can completely compromise the state and its exploitable advantage. Here, we will focus on quantum enhanced protocols in which only phase-insensitive intensity measurements (photon number counting) are performed, which allow probing transmission/absorption properties of a system, leading for example to innovative target detection schemes in a strong background. In this framework, one of the advantages is that the sources experimentally available emit a wide number of pairwise correlated modes, which can be intercepted and exploited separately, for example by many pixels of a camera, providing a parallelism, essential in several applications, like wide field sub-shot-noise imaging and quantum enhanced ghost imaging. Finally, non-classical correlation enables new possibilities in quantum radiometry, e.g. the possibility of absolute calibration of a spatial resolving detector from the on-off- single photon regime to the linear regime, in the same setup.
References in corpus (49)
- Experimental quantum teleportation
- Secure Quantum Key Distribution
- Optical Quantum Computing
- Correlated imaging, quantum and classical
- Detection of 15 dB Squeezed States of Light and their Application for the Absolute Calibration of Photoelectric Quantum Efficiency
- Experimental realization of sub-shot-noise quantum imaging
- Quantum Illumination with Gaussian States
- Quantum Illumination at the Microwave Wavelengths
- Microwave Quantum Illumination
- Imaging with a small number of photons
- Research on Hidden Variable Theories: a review of recent progresses
- Experimental realisation of quantum illumination
- Measuring measurement
- Photon number resolution using a time-multiplexed single-photon detector
- Entanglement-Enhanced Sensing in a Lossy and Noisy Environment
- Gaussian-state quantum-illumination receivers for target detection
- Polarization entangled state measurement on a chip
- Backscattering Differential Ghost Imaging in Turbid Media
- Realisation of the first sub shot noise wide field microscope
- Gaussian states in continuous variable quantum information
- Simple and efficient quantum key distribution with parametric down-conversion
- Sub-shot-noise photon-number correlation in mesoscopic twin-beam of light
- Beating Abbe diffraction limit in confocal microscopy via non-classical photon statistics
- Measurement of sub-shot-noise spatial correlations without subtraction of background
- High-sensitivity imaging with multi-mode twin beams
- Generation of Symmetric Dicke States of Remote Qubits with Linear Optics
- Extraordinary optical transmission of multimode quantum correlations via localized surface plasmons
- Multi-imaging and Bayesian estimation for photon counting with EMCCD's
- Quantum Imaging with Incoherent Photons
- Ghost imaging using homodyne detection
- Chirped Biphotons and Their Compression in Optical Fibres
- Toward real-time quantum imaging with a single pixel camera
- Measuring the photon distribution by ON/OFF photodectors
- Magneto-optical imaging technique for hostile environment: the ghost imaging approach
- Absolute calibration of a CCD camera with twin beams
- Autonomous absolute calibration of an ICCD camera in single-photon detection regime
- Direct calibration of click-counting detectors
- Positive Operator-Valued Measure reconstruction of a beam-splitter tree based photon-number-resolving detector
- Ghost imaging with intense fields from chaotically-seeded parametric downconversion
- Analysis of the possibility of analog detectors calibration by exploiting Stimulated Parametric Down Conversion
- Amplification of polarization NOON states
- Absolute calibration of Analog Detectors using Stimulated Parametric Down Conversion
- Signal-to-noise ratio of Gaussian-state ghost imaging
- Phase estimation with squeezed single photons
- Cosmology and entanglement
- Quantum correlation dynamics in photosynthetic processes assisted by molecular vibrations
- Computational Ghost Imaging
- Dispersion spreading of polarization-entangled states of light and two-photon interference
- Demonstrating an absolute quantum advantage in direct absorption measurement
Cited by in corpus (51)
- Advances in Photonic Quantum Sensing
- Imaging Through Noise With Quantum Illumination
- Quantum Plasmonic Sensors
- Entanglement-Based Quantum Information Technology
- Quantum imaging of biological organisms through spatial and polarization entanglement
- Heisenberg Scaling Quantum Microscopy: Experiment and Theory
- Quantum-limited loss sensing: Multiparameter estimation and Bures distance between loss channels
- Unbiased estimation of an optical loss at the ultimate quantum limit with twin-beams
- Quantum enhanced non-interferometric quantitative phase imaging
- Quantum plasmonic sensing using single photons
- Quantum noise reduction in intensity-sensitive surface plasmon resonance sensors
- Experimental quantum reading with photon counting
- Signal-to-noise properties of correlation plenoptic imaging with chaotic light
- Quantum-enhanced pattern recognition
- Correlated-photon imaging at 10 volumetric images per second
- Measuring kinetic parameters using quantum plasmonic sensing
- Experimental quantum polarimetry using heralded single photons
- Quantum differential ghost microscopy
- Light Field Ghost Imaging
- Improving resolution-sensitivity trade off in sub-shot noise imaging
- Experimental Quantum Enhanced Optical Interferometry
- Experimental realization of scanning quantum microscopy
- Characterization of a photon-number resolving SNSPD using Poissonian and sub-Poissonian light
- Enhanced absorption microscopy with correlated photon pairs
- Statistical properties of undulator radiation in the IOTA storage ring
- Quantum Enhanced Imaging of Non-Uniform Refractive Profiles
- Multifold enhancement of quantum SNR by using an EMCCD as a photon number resolving device
- Quantum illumination using polarization-path entangled single photons for low reflectivity object detection in noisy background
- Quantum Polarimetry
- Quantum Conformance Test
- Experimental Test of Nonlocality Limits from Relativistic Independence
- Quantum illumination using polarization-entangled photon pairs for enhanced object detection
- Two-beam Coupling in the Production of Quantum Correlated Images by Four-wave Mixing
- Multiparameter transmission estimation at the quantum Cramér-Rao limit on a cloud quantum computer
- Optimising image capture for low-light widefield quantitative fluorescence microscopy
- Quantum readout of imperfect classical data
- Theoretical studies on quantum imaging with time-integrated single-photon detection under realistic experimental conditions
- On quantum illumination, quantum reading, and the capacity of quantum computation
- Analytical bounds for non-asymptotic asymmetric state discrimination
- Interaction of a heralded single photon with nitrogen-vacancy centers in a diamond
- Optimal transmission estimation with dark counts
- Near Infrared Quantum Ghost Spectroscopy for Threats Detection
- Weak Thermal State Quadrature-Noise Shadow Imaging
- Optimizing single-photon quantum radar detection through partially postselected filtering
- Optimal circular dichroism sensing with quantum light: Multi-parameter estimation approach
- Scheme for sub-shot-noise transmission measurement using a time multiplexed single-photon source
- Poissonian twin beam states and the effect of symmetrical photon subtraction in loss estimations
- Single-photon emission modeling with statistical estimators for the exponential distribution
- Detection of the Quantum Illumination Measurement
- Optimizing Silicon photomultipliers for Quantum Optics
- Practical considerations for assignment of photon numbers with SNSPDs