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High-dimensional quantum cryptography with twisted light

New Journal of Physics · 2015 · Vol. 17(3) · pp. 033033–033033
Mohammad MirhosseiniOmar S Magaña-LoaizaMalcolm N O’SullivanBrandon RodenburgMehul MalikMartin P J LaveryMiles J PadgettDaniel J GauthierRobert W Boyd

Abstract

Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiting the amount of information that can be sent per photon and placing tight bounds on the error rates that such a system can tolerate. Here we describe a proof-of-principle experiment that indicates the feasibility of high-dimensional QKD based on the transverse structure of the light field allowing for the transfer of more than 1 bit per photon. Our implementation uses the orbital angular momentum (OAM) of photons and the corresponding mutually unbiased basis of angular position (ANG). Our experiment uses a digital micro-mirror device for the rapid generation of OAM and ANG modes at 4 kHz, and a mode sorter capable of sorting single photons based on their OAM and ANG content with a separation efficiency of 93%. Through the use of a seven-dimensional alphabet encoded in the OAM and ANG bases, we achieve a channel capacity of 2.05 bits per sifted photon. Our experiment demonstrates that, in addition to having an increased information capacity, multilevel QKD systems based on spatial-mode encoding can be more resilient against intercept-resend eavesdropping attacks.

Orbital Angular Momentum in OpticsQuantum Information and CryptographyChaos-based Image/Signal EncryptionQuantum key distributionPhotonEavesdroppingQuantum cryptographyQuantum channelPolarization (electrochemistry)Quantum informationQuantum information scienceQuantum networkQuantum

Funding

  • European Commission
  • Canada Excellence Research Chairs, Government of Canada
  • Defense Advanced Research Projects Agency
  • U.S. Air Force
  • Engineering and Physical Sciences Research Council
Citations
624
FWCI
38.00
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References
56
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Reviews of Modern Physics · 2002 · 8,142 citations
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