Quantum communication with correlated nonclassical states
- 15 September 2000
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 62 (4) , 042311
- https://doi.org/10.1103/physreva.62.042311
Abstract
Nonclassical correlations between the quadrature-phase amplitudes of two spatially separated optical beams are exploited to realize a two-channel quantum communication experiment with a high degree of immunity to interception. For this scheme, either channel alone can have an arbitrarily small signal-to-noise ratio (SNR) for transmission of a coherent “message.” However, when the transmitted beams are combined properly upon authorized detection, the encoded message can in principle be recovered with the original SNR of the source. An experimental demonstration has achieved a 3.2 dB improvement in SNR over that possible with correlated classical sources. Extensions of the protocol to improve its security against eavesdropping are discussed.Keywords
All Related Versions
This publication has 44 references indexed in Scilit:
- Quantum limits on bosonic communication ratesReviews of Modern Physics, 1994
- Ultimate information carrying limit of quantum systemsPhysical Review Letters, 1993
- Detection of amplitude modulation with squeezed light for sensitivity beyond the shot-noise limitOptics Letters, 1988
- Squeezed-light–enhanced polarization interferometerPhysical Review Letters, 1987
- Precision measurement beyond the shot-noise limitPhysical Review Letters, 1987
- Quantum limits on noise in linear amplifiersPhysical Review D, 1982
- Quantum-mechanical noise in an interferometerPhysical Review D, 1981
- On the measurement of a weak classical force coupled to a quantum-mechanical oscillator. I. Issues of principleReviews of Modern Physics, 1980
- Optical communication with two-photon coherent states--Part I: Quantum-state propagation and quantum-noiseIEEE Transactions on Information Theory, 1978
- Information Theory of Quantum-Mechanical ChannelsPublished by Elsevier ,1965