Affiliation:
1. Nankai University
2. University of Southern California
3. University of Louisiana at Lafayette
4. Xi’an Jiaotong University
Abstract
We propose and design a 19-ring-air-core fiber that can support about 3000 orbital angular momentum (OAM) modes (156 modes in each ring) with <–80 dB inter-ring cross talk across the entire C and L bands after 100-km fiber propagation. Moreover, the eigenmodes are all separated from their adjacent modes by effective index differences >2.67 × 10−4 and mode groups by > 1.90 × 10−2, which can guarantee the stable transmission of OAM modes. This designed fiber is a potential candidate for applications in spatial division multiplexing (SDM) of optical channels to improve the capacity of next-generation high-speed optical communication systems, especially in short-distance applications. In this Letter, we also show the relationship between supported OAM mode numbers, total cross talk, and effective refractive index of intra-ring modes during the optimization of fiber through numerical simulations. It can provide a related reference for the future design of multi-ring-core fibers.
Funder
Key Technologies R & D Program of Tianjin
Subject
Atomic and Molecular Physics, and Optics
Cited by
6 articles.
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