Opt Lett. 2023 Jul 1;48(13):3371-3374. doi: 10.1364/OL.492805.
Micro-spectrometers have great potential in various fields such as medicine, agriculture, and aerospace. In this work, a quantum-dot (QD) light-chip micro-spectrometer is proposed in which QDs emit different wavelengths of light that are combined with a spectral reconstruction (SR) algorithm. The QD array itself can play the roles of both the light source and the wavelength division structure. The spectra of samples can be obtained by using this simple light source with a detector and algorithm, and the spectral resolution reaches 9.7 nm in the wavelength range from 580 nm to 720 nm. The area of the QD light chip is 4 × 7.5 mm, which is 20 times smaller than the halogen light sources of commercial spectrometers. It does not need a wavelength division structure and greatly reduces the volume of the spectrometer. Such a micro-spectrometer can be used for material identification: in a demonstration, three kinds of transparent samples, real and fake leaves, and real and fake blood were classified with an accuracy of 100%. These results indicate that the spectrometer based on a QD light chip has broad application prospects.
微光谱仪在医学、农业和航空航天等领域具有巨大的潜力。在这项工作中,提出了一种量子点(QD)光芯片微光谱仪,其中 QD 发出不同波长的光,与光谱重建(SR)算法相结合。QD 阵列本身可以同时充当光源和波长分割结构的角色。通过使用这种带有探测器和算法的简单光源,可以获得样品的光谱,并且在 580nm 至 720nm 的波长范围内,光谱分辨率达到 9.7nm。QD 光芯片的面积为 4×7.5mm,比商业光谱仪的卤素光源小 20 倍。它不需要波长分割结构,大大减小了光谱仪的体积。这种微光谱仪可用于材料识别:在一个演示中,三种透明样品、真实和假叶子以及真实和假血液的分类准确率达到 100%。这些结果表明,基于 QD 光芯片的光谱仪具有广阔的应用前景。