Advances in optical angular momentum
Достижения в области оптического углового момента
2008-07-09
SCID: 54.1/92e8a6vd
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helical phase frontshigh-dimensional quantum entanglementoptical angular momentumoptical tweezingorbital angular momentum
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Abstract (AI)
Abstract Some 16 years ago, Allen et al. [Phys. Rev. A 45 , 8185 (1992)] recognised that laser beams which carried an angular momentum additional to photon spin, could be realized in the laboratory. Such beams have helical phase fronts and so have an azimuthal component to the Poynting vector, which results in angular momentum along the beam axis. This orbital angular momentum, very often combined with spin to make optical angular momentum, has given rise to many developments. These range from optical spanners for driving micro‐machines to high dimensional quantum entanglement and new opportunities in quantum information processing. The concept of orbital angular momentum is now leading to new understanding of a wide range of phenomena, including fundamental processes in Bose‐Einstein condensates, while the associated technologies have led to new applications in optical tweezing and microscopy.
Key Findings
1
Combining orbital and spin angular momentum constitutes optical angular momentum and has enabled diverse applications, including optical spanners for driving micromachines.
2
Laser beams can carry orbital angular momentum in addition to photon spin, realized through helical phase fronts and an azimuthal Poynting-vector component.
3
Optical angular momentum supports high-dimensional quantum entanglement and creates new opportunities for quantum information processing.
4
Orbital angular momentum provides insight into fundamental phenomena such as processes in Bose–Einstein condensates.
5
Technologies based on optical angular momentum have produced applications in optical tweezing and microscopy.
Research Object
optical beams carrying orbital angular momentum
Research Subject
the physical phenomena, technological applications, and quantum-information developments enabled by optical angular momentum
Publication Details
Publication Date
2008-07-09
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