Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review
Optical orbital angular momentum (OAM) has become a hot research topic because of its unique properties due to its spiral distribution of phases. The production and transmission of OAM has also become a necessary condition for effective use of OAM. As an optical waveguide with good propagation prope...
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Frontiers Media S.A.
2021
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oai:doaj.org-article:2644a9a5db3b4b9ca58248ce4e2af0242021-12-01T11:10:51ZGeneration, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review2296-424X10.3389/fphy.2021.773505https://doaj.org/article/2644a9a5db3b4b9ca58248ce4e2af0242021-11-01T00:00:00Zhttps://www.frontiersin.org/articles/10.3389/fphy.2021.773505/fullhttps://doaj.org/toc/2296-424XOptical orbital angular momentum (OAM) has become a hot research topic because of its unique properties due to its spiral distribution of phases. The production and transmission of OAM has also become a necessary condition for effective use of OAM. As an optical waveguide with good propagation properties, optical fibers are used in optical systems supporting OAM. This paper introduces the OAM generation and transmission system based on fiber, summarizes the current photonic crystal fiber, ring core fiber, fiber grating and other all-fiber systems that can support OAM modes, and explains some experimental principles. Finally, an outlook on OAM generation or transmission devices for all-fiber systems is presented, providing a useful reference for future related research.Minghao MaMinghao MaYudong LianYudong LianYulei WangYulei WangZhiwei LuZhiwei LuFrontiers Media S.A.articleorbital angular momentumphotonic crystal fiberring core fiberfiber gratingmode selective couplerPhysicsQC1-999ENFrontiers in Physics, Vol 9 (2021) |
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orbital angular momentum photonic crystal fiber ring core fiber fiber grating mode selective coupler Physics QC1-999 |
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orbital angular momentum photonic crystal fiber ring core fiber fiber grating mode selective coupler Physics QC1-999 Minghao Ma Minghao Ma Yudong Lian Yudong Lian Yulei Wang Yulei Wang Zhiwei Lu Zhiwei Lu Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
description |
Optical orbital angular momentum (OAM) has become a hot research topic because of its unique properties due to its spiral distribution of phases. The production and transmission of OAM has also become a necessary condition for effective use of OAM. As an optical waveguide with good propagation properties, optical fibers are used in optical systems supporting OAM. This paper introduces the OAM generation and transmission system based on fiber, summarizes the current photonic crystal fiber, ring core fiber, fiber grating and other all-fiber systems that can support OAM modes, and explains some experimental principles. Finally, an outlook on OAM generation or transmission devices for all-fiber systems is presented, providing a useful reference for future related research. |
format |
article |
author |
Minghao Ma Minghao Ma Yudong Lian Yudong Lian Yulei Wang Yulei Wang Zhiwei Lu Zhiwei Lu |
author_facet |
Minghao Ma Minghao Ma Yudong Lian Yudong Lian Yulei Wang Yulei Wang Zhiwei Lu Zhiwei Lu |
author_sort |
Minghao Ma |
title |
Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
title_short |
Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
title_full |
Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
title_fullStr |
Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
title_full_unstemmed |
Generation, Transmission and Application of Orbital Angular Momentum in Optical Fiber: A Review |
title_sort |
generation, transmission and application of orbital angular momentum in optical fiber: a review |
publisher |
Frontiers Media S.A. |
publishDate |
2021 |
url |
https://doaj.org/article/2644a9a5db3b4b9ca58248ce4e2af024 |
work_keys_str_mv |
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_version_ |
1718405223155761152 |