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Communication with spatially modulated light through turbulent air across Vienna

New Journal of Physics · 2014 · Vol. 16(11) · pp. 113028–113028
Mario KrennRobert FicklerMatthias FinkJohannes HandsteinerMehul MalikThomas ScheidlRupert UrsinAnton Zeilinger

Abstract

Transverse spatial modes of light offer a large state-space with interesting physical properties. For exploiting these special modes in future long-distance experiments, the modes will have to be transmitted over turbulent free-space links. Numerous recent lab-scale experiments have found significant degradation in the mode quality after transmission through simulated turbulence and consecutive coherent detection. Here, we experimentally analyze the transmission of one prominent class of spatial modes-orbital-angular momentum (OAM) modes-through 3 km of strong turbulence over the city of Vienna. Instead of performing a coherent phase-dependent measurement, we employ an incoherent detection scheme, which relies on the unambiguous intensity patterns of the different spatial modes. We use a pattern recognition algorithm (an artificial neural network) to identify the characteristic mode patterns displayed on a screen at the receiver. We were able to distinguish between 16 different OAM mode superpositions with only a 1.7% error rate and to use them to encode and transmit small grayscale images. Moreover, we found that the relative phase of the superposition modes is not affected by the atmosphere, establishing the feasibility for performing long-distance quantum experiments with the OAM of photons. Our detection method works for other classes of spatial modes with

Orbital Angular Momentum in OpticsOptical Wireless Communication TechnologiesAdaptive optics and wavefront sensingSuperposition principleMode (computer interface)Transmission (telecommunications)TurbulenceTransverse planePhase (matter)Image resolutionQuality (philosophy)

Funding

  • European Commission
  • Austrian Science Fund
  • FP7 Information and Communication Technologies
Citations
510
FWCI
27.49
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
Cited by
High-dimensional quantum cryptography with twisted light
New Journal of Physics · 2015 · 624 citations
References
Experimental quantum cryptography with qutrits
New Journal of Physics · 2006 · 416 citations
Entanglement-based quantum communication over 144 km
Nature Physics · 2007 · 1,170 citations
Entanglement detection
Physics Reports · 2009 · 2,343 citations
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Communication with spatially modulated light through turbulent air across Vienna · Scinovex