Abstract
The spatial structuring of optical fields is integral within many next generation optical metrology and communication techniques. A verifiable physical model of the propagation of these optical fields in a turbulent environment is important for developing effective mitigation techniques for the modal degradation that occurs in a free-space link.Wepresent a method to simulate this modal degradation that agrees with recently reported experimental findings. A1.5 kmfree-space link is emulated by decomposing the optical turbulence that accumulates over a long distance link, into many, weakly perturbing steps of 10 m. This simulation shows that the high-order vortex at the centre of the helical phase profiles inmodes that carry orbital angularmomentumof |ℓ| ≥ 2h are unstable and fracture into many vortices when they propagate over the link. This splitting presents issues for the application of turbulence mitigation techniques. The usefulness of pre-correction, post-correction, and complex field conjugation techniques are discussed.
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CITATION STYLE
Lavery, M. P. J. (2018). Vortex instability in turbulent free-space propagation. New Journal of Physics, 20(4). https://doi.org/10.1088/1367-2630/aaae9e
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