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Deep‑learning‑based high‑resolution recognition of fractional‑spatial‑mode‑encoded data for free‑space optical communications

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Abstract
Structured light with spatial degrees of freedom (DoF) is considered a potential solution to address the unprecedented demand for data traffic, but there is a limit to effectively improving the communication capacity by its integer quantization. We propose a data transmission system using fractional mode encoding and deep-learning decoding. Spatial modes of Bessel-Gaussian beams separated by fractional intervals are employed to represent 8-bit symbols. Data encoded by switching phase holograms is efficiently decoded by a deep-learning classifier that only requires the intensity profile of transmitted modes. Our results show that the trained model can simultaneously recognize two independent DoF without any mode sorter and precisely detect small differences between fractional modes. Moreover, the proposed scheme successfully achieves image transmission despite its densely packed mode space. This research will present a new approach to realizing higher data rates for advanced optical communication systems.
Author(s)
Ko, Do KyeongYoungbin Na
Issued Date
2021-01
Type
Article
DOI
10.1038/s41598-021-82239-8
URI
https://scholar.gist.ac.kr/handle/local/11723
Publisher
Springer Nature
Citation
Scientific Reports, v.11, no.1, pp.2678
ISSN
2045 2322
Appears in Collections:
Department of Physics and Photon Science > 1. Journal Articles
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