Robust Super‐Resolution Image Transmission Based on a Ring Core Fiber with Orbital Angular Momentum

Author:

Wu Zheyu1,Gao Ran1ORCID,Zhou Sitong1,Wang Fei1,Li Zhipei1,Chang Huan1,Guo Dong1,Xin Xiangjun1,Zhang Qi2,Tian Feng2,Wu Qiang3

Affiliation:

1. School of Information and electronics Beijing Institute of Technology Beijing 100081 China

2. School of Electronic engineering Beijing University of Posts and Telecommunications Beijing 100876 China

3. Faculty of Engineering and Environment Northumbria University Newcastle Upon Tyne NE1 8ST UK

Abstract

AbstractSingle‐fiber imaging technology offers unique insights for research and inspection in difficult‐to‐reach and narrow spaces. In particular, ultra‐compact multimode fiber (MMF) imaging, has received increasing interest over the past decade. However, MMF imaging will be seriously distorted when subjected to dynamic perturbations due to time‐varying mode coupling, and the imaging of space objects via Gaussian beam will be relatively degraded at the edge due to insufficient contrast. Here, a robust super‐resolution image transmission method based on a ring core fiber (RCF) with orbital angular momentum (OAM) is proposed and experimentally demonstrated. The OAM modes propagating in the RCF form a series of weakly coupled mode groups, making the imaging system robust to external perturbations. In addition, a spiral phase plate is used as a vortex filter to produce OAM for edge enhancement, thus improving the image resolution. Furthermore, a few‐shot U‐Transformer neural network is proposed to enhance the resilience of the developed RCF‐OAM imaging system against environmental perturbations. Finally, the developed RCF‐OAM imaging system achieves biological image transmission, demonstrating the practicality of the scheme. This pioneering RCF OAM image transmission system may have broad applications, potentially revolutionizing fields such as biological imaging and industrial non‐destructive testing.

Funder

Beijing Municipal Natural Science Foundation

Publisher

Wiley

Subject

Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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