Multiple core modes conversion using helical long-period fiber gratings

Abstract

We propose and demonstrate the fabrication of an all-fiber mode converter enabling simultaneous generation of multiple high-order core modes, which is realized by inscribing a helical long-period grating (HLPG) in a few-mode fiber (FMF) using a femtosecond laser. Helical refractive index modulation is introduced by continuously irradiating the core region with a highly focused femtosecond laser, while the fiber moves in a spiral path through a three-dimensional translation stage. Mode conversion from the LP01 mode to high-order core modes, including LP11, LP21, LP31, LP02, LP12, and LP41 modes, is achieved by controlling the inscription pitch of the grating. Moreover, first-, second-, third-, and fourth-order orbital angular momentum (OAM) modes can be directly generated using the HLPGs, and multiple OAM modes of different topological charges can be simultaneously excited using a single high diffraction order HLPG. This approach offers a new option for implementing with high-integration high-order mode converters or OAM mode generators.

Publication DOI: https://doi.org/10.1364/ol.488836
Divisions: College of Engineering & Physical Sciences > Aston Institute of Photonics Technology (AIPT)
College of Engineering & Physical Sciences
Additional Information: Copyright © 2023 Optica Publishing Group. This paper was published in Optics Letters and is made available as an electronic reprint with the permission of OSA. The paper can be found at the following URL on the OSA website: https://opg.optica.org/ol/abstract.cfm?uri=ol-48-11-2965 . Systematic or multiple reproduction or distribution to multiple locations via electronic or other means is prohibited and is subject to penalties under law.
Uncontrolled Keywords: Atomic and Molecular Physics, and Optics
Publication ISSN: 1539-4794
Last Modified: 08 Dec 2025 08:27
Date Deposited: 03 Dec 2025 16:01
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Related URLs: https://opg.opt ... -2965&id=530982 (Publisher URL)
http://www.scop ... tnerID=8YFLogxK (Scopus URL)
PURE Output Type: Article
Published Date: 2023-06-01
Published Online Date: 2023-05-25
Accepted Date: 2023-05-10
Authors: Jiang, Chen
Zhou, Kaiming (ORCID Profile 0000-0002-6011-1912)
Sun, Bing
Wan, Ying
Ma, Yuehui
Wang, Zhiqiang
Zhang, Zuxing
Mou, Chengbo
Liu, Yunqi

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