分光计
光谱分辨率
光学
自由光谱范围
窄带
动态范围
宽带
谐振器
材料科学
成像光谱学
光谱成像
多路复用
谱线
光电子学
物理
计算机科学
光谱学
电信
量子力学
天文
作者
Chunlei Sun,Zequn Chen,Yuting Ye,Kunhao Lei,Hui Ma,Maoliang Wei,Renjie Tang,Jianghong Wu,Hongtao Lin,Lan Li
标识
DOI:10.1002/lpor.202200792
摘要
Abstract On‐chip micro‐spectrometers are sought after with great effort owing to extensive potential applications in mobile optical sensing and imaging. By multiplexing more physical channels, the reconstructive spectrometers based on the spectral‐to‐spatial mapping technique can improve the spectral range. However, this method is challenging to implement and sustain due to the increase in system complexity and the decrease of dynamic range or spectral resolution. Here, a micro‐spectrometer utilizing a single tunable microdisk resonator (MDR) is demonstrated. Such a single MDR spectrometer has only one physical channel to receive all spectral components with a compact size, overcoming the trade‐off among spectral resolution, spectral range, and dynamic range. Leveraging the wavelength and temperature‐dependent response matrix, unknown spectra are reconstructed from their corresponding output light intensity vector. The fabricated device illustrates a high resolution of 0.01 nm for a dual peak and a medium resolution of 0.2 nm in the 20 nm spectral range. A wide variety of complex input spectra, including narrowband and broadband spectral signals, can be well recovered, exhibiting the robustness of the spectral reconstruction approach. Moreover, this proposed spectrometer exhibits ease of scalability and flexible configuration to a spectrometer array covering a set of desired and even discrete spectral ranges.
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