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Orbital angular momentum 25 years on [Invited]

Optics Express · 2017 · Vol. 25(10) · pp. 11265–11265
Miles J. Padgett

Abstract

Twenty-five years ago Allen, Beijersbergen, Spreeuw, and Woerdman published their seminal paper establishing that light beams with helical phase-fronts carried an orbital angular momentum. Previously orbital angular momentum had been associated only with high-order atomic/molecular transitions and hence considered to be a rare occurrence. The realization that every photon in a laser beam could carry an orbital angular momentum that was in excess of the angular momentum associated with photon spin has led both to new understandings of optical effects and various applications. These applications range from optical manipulation, imaging and quantum optics, to optical communications. This brief review will examine some of the research in the field to date and consider what future directions might hold.

Funding

  • Engineering and Physical Sciences Research Council
Citations
808
FWCI
53.88
field-weighted impact
References
111
Percentile
100%
vs. same field & year
Citations per year
References
Dynamic holographic optical tweezers
Optics Communications · 2002 · 1,503 citations
The Poynting vector in Laguerre-Gaussian laser modes
Optics Communications · 1995 · 326 citations
High-dimensional quantum cryptography with twisted light
New Journal of Physics · 2015 · 624 citations
Tweezers with a twist
Nature Photonics · 2011 · 2,141 citations
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