Observing optical coherence across Fock layers with weak-field homodyne detectors.

Quantum properties of optical modes are typically assessed by observing their photon statistics or the distribution of their quadratures. Both particle- and wave-like behaviours deliver important information and each may be used as a resource in quantum-enhanced technologies. Weak-field homodyne (WF...

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Main Authors: Donati, G, Bartley, T, Jin, X, Vidrighin, MD, Datta, A, Barbieri, M, Walmsley, I
Format: Journal article
Language:English
Published: Nature Publishing Group 2014
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author Donati, G
Bartley, T
Jin, X
Vidrighin, MD
Datta, A
Barbieri, M
Walmsley, I
author_facet Donati, G
Bartley, T
Jin, X
Vidrighin, MD
Datta, A
Barbieri, M
Walmsley, I
author_sort Donati, G
collection OXFORD
description Quantum properties of optical modes are typically assessed by observing their photon statistics or the distribution of their quadratures. Both particle- and wave-like behaviours deliver important information and each may be used as a resource in quantum-enhanced technologies. Weak-field homodyne (WFH) detection provides a scheme that combines the wave- and particle-like descriptions. Here we show that it is possible to observe a wave-like property such as the optical coherence across Fock basis states in the detection statistics derived from discrete photon counting. We experimentally demonstrate these correlations using two WHF detectors on each mode of two classes of two-mode entangled states. Furthermore, we theoretically describe the response of WHF detection on a two-mode squeezed state in the context of generalized Bell inequalities. Our work demonstrates the potential of this technique as a tool for hybrid continuous/discrete-variable protocols on a phenomenon that explicitly combines both approaches.
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spelling oxford-uuid:a1f41bd7-b21a-4089-8b1e-83510e4b91212022-03-27T02:16:52ZObserving optical coherence across Fock layers with weak-field homodyne detectors.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a1f41bd7-b21a-4089-8b1e-83510e4b9121EnglishSymplectic Elements at OxfordNature Publishing Group2014Donati, GBartley, TJin, XVidrighin, MDDatta, ABarbieri, MWalmsley, IQuantum properties of optical modes are typically assessed by observing their photon statistics or the distribution of their quadratures. Both particle- and wave-like behaviours deliver important information and each may be used as a resource in quantum-enhanced technologies. Weak-field homodyne (WFH) detection provides a scheme that combines the wave- and particle-like descriptions. Here we show that it is possible to observe a wave-like property such as the optical coherence across Fock basis states in the detection statistics derived from discrete photon counting. We experimentally demonstrate these correlations using two WHF detectors on each mode of two classes of two-mode entangled states. Furthermore, we theoretically describe the response of WHF detection on a two-mode squeezed state in the context of generalized Bell inequalities. Our work demonstrates the potential of this technique as a tool for hybrid continuous/discrete-variable protocols on a phenomenon that explicitly combines both approaches.
spellingShingle Donati, G
Bartley, T
Jin, X
Vidrighin, MD
Datta, A
Barbieri, M
Walmsley, I
Observing optical coherence across Fock layers with weak-field homodyne detectors.
title Observing optical coherence across Fock layers with weak-field homodyne detectors.
title_full Observing optical coherence across Fock layers with weak-field homodyne detectors.
title_fullStr Observing optical coherence across Fock layers with weak-field homodyne detectors.
title_full_unstemmed Observing optical coherence across Fock layers with weak-field homodyne detectors.
title_short Observing optical coherence across Fock layers with weak-field homodyne detectors.
title_sort observing optical coherence across fock layers with weak field homodyne detectors
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