All-optical analog differential operation and information processing empowered by meta-devices

IF 6.6 2区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanophotonics Pub Date : 2025-01-24 DOI:10.1515/nanoph-2024-0540
Chen Zhou, Yongtian Wang, Lingling Huang
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Abstract

The burgeoning demand for high-performance computing, robust data processing, and rapid growth of big data necessitates the emergence of novel optical devices to efficiently execute demanding computational processes. The field of meta-devices, such as metamaterial or metasurface, has experienced unprecedented growth over the past two decades. By manipulating the amplitude, phase, polarization, and dispersion of light wavefronts in spatial, spectral, and temporal domains, viable solutions for the implementation of all-optical analog computation and information processing have been provided. In this review, we summarize the latest developments and emerging trends of computational meta-devices as innovative platforms for spatial optical analog differentiators and information processing. Based on the general concepts of spatial Fourier transform and Green’s function, we analyze the physical mechanisms of meta-devices in the application of amplitude differentiation, phase differentiation, and temporal differentiation and summarize their applications in image edge detection, image edge enhancement, and beam shaping. Finally, we explore the current challenges and potential solutions in optical analog differentiators and provide perspectives on future research directions and possible developments.
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元器件支持的全光模拟微分运算和信息处理
对高性能计算、稳健数据处理和大数据快速增长的需求不断增长,需要新型光学器件的出现,以有效地执行苛刻的计算过程。在过去的二十年里,超材料或超表面等元器件领域经历了前所未有的发展。通过控制光波前在空间、光谱和时间域的振幅、相位、偏振和色散,为实现全光模拟计算和信息处理提供了可行的解决方案。本文综述了计算元器件作为空间光学模拟微分器和信息处理的创新平台的最新发展和新兴趋势。基于空间傅里叶变换和格林函数的一般概念,分析了元器件在振幅微分、相位微分和时间微分应用中的物理机制,并总结了它们在图像边缘检测、图像边缘增强和光束整形中的应用。最后,我们探讨了光学模拟微分器目前面临的挑战和潜在的解决方案,并对未来的研究方向和可能的发展提出了展望。
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来源期刊
Nanophotonics
Nanophotonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
13.50
自引率
6.70%
发文量
358
审稿时长
7 weeks
期刊介绍: Nanophotonics, published in collaboration with Sciencewise, is a prestigious journal that showcases recent international research results, notable advancements in the field, and innovative applications. It is regarded as one of the leading publications in the realm of nanophotonics and encompasses a range of article types including research articles, selectively invited reviews, letters, and perspectives. The journal specifically delves into the study of photon interaction with nano-structures, such as carbon nano-tubes, nano metal particles, nano crystals, semiconductor nano dots, photonic crystals, tissue, and DNA. It offers comprehensive coverage of the most up-to-date discoveries, making it an essential resource for physicists, engineers, and material scientists.
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