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Free-space information transfer using light beams carrying orbital angular momentum

Optics Express · 2004 · Vol. 12(22) · pp. 5448–5448
Graham M. GibsonJohannes CourtialMiles J. PadgettM. V. VasnetsovВ. ПаськоStephen M. BarnettSonja Franke‐Arnold

Abstract

We demonstrate the transfer of information encoded as orbital angular momentum (OAM) states of a light beam. The transmitter and receiver units are based on spatial light modulators, which prepare or measure a laser beam in one of eight pure OAM states. We show that the information encoded in this way is resistant to eavesdropping in the sense that any attempt to sample the beam away from its axis will be subject to an angular restriction and a lateral offset, both of which result in inherent uncertainty in the measurement. This gives an experimental insight into the effects of aperturing and misalignment of the beam on the OAM measurement and demonstrates the uncertainty relationship for OAM.

Orbital Angular Momentum in OpticsQuantum Mechanics and ApplicationsQuantum optics and atomic interactionsOpticsAngular momentumOrbital angular momentum of lightPhysicsLight beamOrbital angular momentum multiplexingAngular momentum of lightBeam (structure)EavesdroppingOffset (computer science)

Funding

  • Royal Society of Edinburgh
  • Engineering and Physical Sciences Research Council
Citations
2,510
FWCI
13.88
field-weighted impact
References
2
Percentile
99%
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Free-space information transfer using light beams carrying orbital angular momentum · Scinovex