Metasurface-tuned light-matter interactions for high-performance photodetectors

IF 6.3 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2026-01-01 Epub Date: 2024-01-11 DOI:10.1016/j.fmre.2024.01.002
Guanyu Zhang , Chang Xu , Dong Sun , Qinsheng Wang , Guowei Lu , Qihuang Gong
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Abstract

Photodetection, the conversion of optical signals to electrical signals, plays a pivotal role in optical communication, sensing, and computing. However, with the advent of novel applications such as quantum computing, intelligent driving, high-speed communication, and augmented reality, traditional photodetectors encounter challenges associated with miniaturization, the assurance of high performance, and the need for multifunctionality. These demands have prompted the development of novel photodetectors. One particularly promising avenue involves integrating conventional photodetection with metasurfaces. Metasurfaces facilitate highly localized field manipulation and versatile modes control at the subwavelength scale via plasmon resonance or Mie scattering, thereby enabling superior performance and multifunctionality detection. Consequently, metasurface-enhanced photodetectors have garnered significant attention in recent years. This review provides an overview of the unique roles played by metasurfaces in photodetection and summarizes notable breakthroughs in recent years.
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用于高性能光电探测器的元表面调谐光物质相互作用
光探测是光信号到电信号的转换,在光通信、传感和计算中起着举足轻重的作用。然而,随着量子计算、智能驾驶、高速通信和增强现实等新应用的出现,传统光电探测器面临着小型化、高性能保证和多功能需求等挑战。这些需求促使了新型光电探测器的发展。一个特别有前途的途径是将传统的光探测与超表面相结合。超表面通过等离子体共振或米氏散射促进高度局域场操作和亚波长尺度上的通用模式控制,从而实现卓越的性能和多功能检测。因此,近年来,超表面增强光电探测器获得了极大的关注。本文综述了超表面在光探测中的独特作用,并总结了近年来的重大突破。
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
期刊介绍:
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