4.6 Article

Quantum-enhanced noise radar

Journal

APPLIED PHYSICS LETTERS
Volume 114, Issue 11, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5085002

Keywords

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Funding

  1. NSERC of Canada
  2. Canadian Foundation for Innovation
  3. Ontario Ministry of Research, Innovation and Science
  4. Canada First Research Excellence Fund (CFREF)
  5. Industry Canada
  6. NRC of Canada
  7. DRDC
  8. CMC

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We propose a protocol for quantum illumination: a quantum-enhanced noise radar. A two-mode squeezed state, which exhibits continuous-variable entanglement between so-called signal and idler beams, is used as input to the radar system. Compared to existing proposals for quantum illumination, our protocol does not require joint measurement of the signal and idler beams. This greatly enhances the practicality of the system by, for instance, eliminating the need for a quantum memory to store the idler. We perform a proof-of-principle experiment in the microwave regime, directly comparing the performance of a two-mode squeezed source to an ideal classical noise source that saturates the classical bound for correlation. We find that, even in the presence of significant added noise and loss, the quantum source outperforms the classical source by as much as an order of magnitude. Published under license by AIP Publishing.

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