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光学计算超表面:应用与进展

Optical computing metasurfaces: applications and advances.

作者信息

Zhou Hongqiang, Zhao Chongli, He Cong, Huang Lingling, Man Tianlong, Wan Yuhong

机构信息

School of Physics and Optoelectronic Engineering, Beijing University of Technology, Beijing 100124, China.

Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Nanophotonics. 2024 Feb 13;13(4):419-441. doi: 10.1515/nanoph-2023-0871. eCollection 2024 Feb.

Abstract

Integrated photonic devices and artificial intelligence have presented a significant opportunity for the advancement of optical computing in practical applications. Optical computing technology is a unique computing system based on optical devices and computing functions, which significantly differs from the traditional electronic computing technology. On the other hand, optical computing technology offers the advantages such as fast speed, low energy consumption, and high parallelism. Yet there are still challenges such as device integration and portability. In the burgeoning development of micro-nano optics technology, especially the deeply ingrained concept of metasurface technique, it provides an advanced platform for optical computing applications, including edge detection, image or motion recognition, logic computation, and on-chip optical computing. With the aim of providing a comprehensive introduction and perspective for optical computing metasurface applications, we review the recent research advances of optical computing, from nanostructure and computing methods to practical applications. In this work, we review the challenges and analysis of optical computing metasurfaces in engineering field and look forward to the future development trends of optical computing.

摘要

集成光子器件和人工智能为光学计算在实际应用中的发展提供了重大机遇。光学计算技术是一种基于光学器件和计算功能的独特计算系统,与传统电子计算技术有显著区别。另一方面,光学计算技术具有速度快、能耗低和高并行性等优点。然而,仍然存在诸如器件集成和便携性等挑战。在微纳光学技术的蓬勃发展中,尤其是超表面技术深入人心,它为光学计算应用提供了一个先进平台,包括边缘检测、图像或运动识别、逻辑计算以及片上光学计算。为了全面介绍和展望光学计算超表面的应用,我们回顾了光学计算的最新研究进展,从纳米结构和计算方法到实际应用。在这项工作中,我们回顾了工程领域中光学计算超表面面临的挑战并进行分析,同时展望光学计算的未来发展趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a029/11501951/7dffc5e5c8a6/j_nanoph-2023-0871_fig_001.jpg

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