Extracting an entanglement signature from only classical mutual information

David J. Starling, John C. Howell

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We use classical mutual information to characterize two photons measured in three mutually unbiased bases. We theoretically and experimentally compare entangled and separable states and find a bound on the information capacity of the pair.

Original languageEnglish (US)
Title of host publicationQuantum Electronics and Laser Science Conference, QELS 2011
StatePublished - Dec 1 2011
EventQuantum Electronics and Laser Science Conference, QELS 2011 - Baltimore, MD, United States
Duration: May 1 2011May 6 2011

Other

OtherQuantum Electronics and Laser Science Conference, QELS 2011
CountryUnited States
CityBaltimore, MD
Period5/1/115/6/11

Fingerprint

Channel capacity
Photons
signatures
photons

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

Starling, D. J., & Howell, J. C. (2011). Extracting an entanglement signature from only classical mutual information. In Quantum Electronics and Laser Science Conference, QELS 2011
Starling, David J. ; Howell, John C. / Extracting an entanglement signature from only classical mutual information. Quantum Electronics and Laser Science Conference, QELS 2011. 2011.
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author = "Starling, {David J.} and Howell, {John C.}",
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Starling, DJ & Howell, JC 2011, Extracting an entanglement signature from only classical mutual information. in Quantum Electronics and Laser Science Conference, QELS 2011. Quantum Electronics and Laser Science Conference, QELS 2011, Baltimore, MD, United States, 5/1/11.

Extracting an entanglement signature from only classical mutual information. / Starling, David J.; Howell, John C.

Quantum Electronics and Laser Science Conference, QELS 2011. 2011.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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Starling DJ, Howell JC. Extracting an entanglement signature from only classical mutual information. In Quantum Electronics and Laser Science Conference, QELS 2011. 2011