Broadband dispersion compensating ring-core fiber for orbital angular momentum modes

Author:

Zhao WenqianORCID,Han Xu,Geng WenpuORCID,Wang YingningORCID,Fang Yuxi,Bao Changjing1,Wang Zhi,Liu Yan-ge,Ren Yongxiong1,Pan Zhongqi2,Yue Yang3

Affiliation:

1. University of Southern California

2. University of Louisiana at Lafayette

3. Xi’an Jiaotong University

Abstract

A well designed ring-core fiber can theoretically support numerous orbital angular momentum (OAM) modes with low crosstalk for space-division-multiplexing (SDM) data transmission, which is considered as a promising solution for overcoming the capacity crunch in optical communication network. However, the accumulated chromatic dispersion in OAM-fiber could limit the data speed and transmission distance of communication systems. A potential solution is to insert a dispersion compensation ring-core fiber with opposite-sign of dispersion in the transmission fiber along the fiber link. In this work, we propose a triple ring-core fiber with broadband negative dispersion. A highest negative dispersion of -24.47 ps/(nm·km) at 1550 nm and an average dispersion slope in the C band from -0.182 ps/(nm2·km) to 0.065 ps/(nm2·km) can be achieved to compensate multi-order dispersion. The effects of Ge-doping concentration fluctuation in the high-index ring core and fabrication errors on fiber geometric structures are also investigated. Furthermore, the effective mode area decreases as the widths of high-index rings increase due to the enhanced confinement ability. The designed triple ring-core fiber could offer potential for compensating OAM fiber links with positive dispersions.

Funder

National Key Research and Development Program of China

Key Technologies Research and Development Program of Tianjin

Shaanxi Key Laboratory of Deep Space Exploration Intelligent Information Technology

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Dispersion Compensating Fiber for OAM Modes;2024 22nd International Conference on Optical Communications and Networks (ICOCN);2024-07-26

2. Extending orbital angular momentum multiplexing to radially high orders for massive mode channels in fiber transmission;Optics Letters;2023-07-06

3. Ring-core Fiber Supporting OAM-based Optical Communications;2023 Opto-Electronics and Communications Conference (OECC);2023-07-02

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