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Intelligent optoelectronic processor for orbital angular momentum spectrum measurement

Intelligent optoelectronic processor for orbital angular momentum spectrum measurement

来源:Arxiv_logoArxiv
英文摘要

Orbital angular momentum (OAM) detection underpins almost all aspects of vortex beams' advances such as communication and quantum analogy. Conventional schemes are frustrated by low speed, complicated system, limited detection range. Here, we devise an intelligent processor composed of photonic and electronic neurons for OAM spectrum measurement in a fast, accurate and direct manner. Specifically, optical layers extract invisible topological charge information from incoming light and a shallow electronic layer predicts the exact spectrum. The integration of optical-computing promises us a compact single-shot system with high speed and energy efficiency, neither necessitating reference wave nor repetitive steps. Importantly, our processor is endowed with salient generalization ability and robustness against diverse structured light and adverse effects. We further raise a universal model interpretation paradigm to reveal the underlying physical mechanisms in the hybrid processor, as distinct from conventional 'black-box' networks. Such interpretation algorithm can improve the detection efficiency. We also complete the theory of optoelectronic network enabling its efficient training. This work not only contributes to the explorations on OAM physics and applications, and also broadly inspires the advanced links between intelligent computing and physical effects.

Zeqi Liu、Yuan Meng、Qiang Liu、Xing Fu、Ziyu Zhan、Hao Wang、Futai Hu

光电子技术物理学电子技术应用

Zeqi Liu,Yuan Meng,Qiang Liu,Xing Fu,Ziyu Zhan,Hao Wang,Futai Hu.Intelligent optoelectronic processor for orbital angular momentum spectrum measurement[EB/OL].(2022-05-30)[2025-08-09].https://arxiv.org/abs/2205.15045.点此复制

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