Measurement of sub-shot-noise spatial correlations without subtraction of background
arXiv:0810.1470 · doi:10.1103/PhysRevLett.102.213602
Abstract
In this paper we present the first measurement of sub-shot-noise spatial correlations without any subtraction of background, a result opening the way to realize sub-shot-noise imaging of weak objects
4 pages, 4 figures
References in corpus (2)
Cited by in corpus (23)
- Experimental realization of sub-shot-noise quantum imaging
- Experimental realisation of quantum illumination
- Realisation of the first sub shot noise wide field microscope
- Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology
- Multiphoton Effects Enhanced Due to Ultrafast Photon-Number Fluctuations
- Engineering the Frequency Spectrum of Bright Squeezed Vacuum via Group Velocity Dispersion in an SU(1,1) Interferometer
- Coherence properties of high-gain twin beams generated in pump-depletion regime
- Intensified Tpx3Cam, a fast data-driven optical camera with nanosecond timing resolution for single photon detection in quantum applications
- Magneto-optical imaging technique for hostile environment: the ghost imaging approach
- Absolute calibration of a CCD camera with twin beams
- Correlated-photon imaging at 10 volumetric images per second
- Positive Operator-Valued Measure reconstruction of a beam-splitter tree based photon-number-resolving detector
- Spatial squeezing in bright twin beams generated with four-wave mixing: constraints on characterization with an EMCCD camera
- Control of quantum transverse correlations on a four-photon system
- Quantum illumination with multiplexed photodetection
- Ghost imaging as loss estimation: Quantum versus classical schemes
- Tailoring PDC speckle structure
- Two-beam light with simultaneous anticorrelations in photon-number fluctuations and sub-Poissonian statistics
- Low-Light Shadow Imaging using Quantum-Noise Detection with a Camera
- Quantum Technology for Military Applications
- Detecting single photons is not always necessary to evidence interference of photon probability amplitudes
- Waves in intensity coherence of evolving intense twin beams
- Study of afterpulsing in optical image intensifiers