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基于超宽带可重构光电探测的单像素红外微型光谱仪。

Single-Pixel Infrared Miniaturized Spectrometer Enabled by Ultra-Broadband Reconfigurable Photodetection.

作者信息

Liang Wenyue, Nan Xianghong, Cai Wenfeng, Tan Ning, Zheng Qilin, Lu Yuyao, Huang Yongyue, Yan Jiahao, Lei Dangyuan, Wen Long, Liu Yanjun, Chen Qin

机构信息

Guangdong Provincial Key Laboratory of Nanophotonic Manipulation, Institute of Nanophotonics, College of Physics & Optoelectronic Engineering, Jinan University, Guangzhou, 511443, China.

Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.

出版信息

Adv Sci (Weinh). 2025 Jul;12(25):e2500830. doi: 10.1002/advs.202500830. Epub 2025 Apr 2.

Abstract

Miniaturized spectrometers utilizing a single reconfigurable photodetector (PD) are highly attractive in the infrared (IR) range due to their advantages in terms of cost, ease of integration, and reduced system complexity. However, such devices usually suffer from either limited wavelength tuning range or high spectral correlation in spectral sampling. Here, a new concept based on tunable guided mode resonances and surface plasmon resonances in a simple liquid crystal/Au stack is proposed to break the wavelength tuning range limit and simultaneously enable low spectral correlation. A chip-scale IR spectrometer using a single-pixel PbS PD is realized with a remarkably large wavelength tuning range over 850 nm (1150-2000 nm) and high fidelity (mean square error ≈0.001) in spectrum measurement. Such a novel technique is applied in plastic sorting and demonstrated remarkable improvement in sorting accuracy benefiting from its broadband property and distinct spectral responses at various sampling biases. Furthermore, a post-tuned operating mode for efficient and accurate spectroscopy is demonstrated by customizing the wavelength/bias scanning strategies, demonstrating the high flexibility of this technology. Full-vector analysis considering the interface anchoring effect and the anisotropic gradient refractive index distribution of liquid crystal is conducted to reveal the fundamental principles of broadband light modulation.

摘要

利用单个可重构光电探测器(PD)的小型化光谱仪在红外(IR)波段极具吸引力,因为它们在成本、易于集成以及降低系统复杂性方面具有优势。然而,此类设备通常要么波长调谐范围有限,要么在光谱采样中存在高光谱相关性。在此,提出了一种基于简单液晶/Au堆叠结构中可调谐导模共振和表面等离子体共振的新概念,以突破波长调谐范围限制并同时实现低光谱相关性。使用单像素PbS PD实现了一种芯片级红外光谱仪,其波长调谐范围超过850 nm(1150 - 2000 nm),光谱测量具有高保真度(均方误差≈0.001)。这种新颖技术应用于塑料分拣,受益于其宽带特性和在不同采样偏差下独特的光谱响应,分拣精度有显著提高。此外,通过定制波长/偏差扫描策略展示了一种用于高效准确光谱分析的后调谐操作模式,证明了该技术的高灵活性。进行了考虑液晶界面锚定效应和各向异性梯度折射率分布的全矢量分析,以揭示宽带光调制的基本原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e7/12224978/d911daec9f3a/ADVS-12-2500830-g004.jpg

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