Wang Jingyi, Pan Beibei, Wang Zi, Zhang Jiakai, Zhou Zhiqi, Yao Lu, Wu Yanan, Ren Wuwei, Wang Jianyu, Ji Haiming, Yu Jingyi, Chen Baile
School of Information Science and Technology, ShanghaiTech University, Shanghai, PR China.
Shanghai Engineering Research Center of Energy Efficient and Custom AI IC, Shanghai, PR China.
Nat Commun. 2024 Feb 27;15(1):1773. doi: 10.1038/s41467-024-46066-5.
Ultra-compact spectrometers are becoming increasingly popular for their promising applications in biomedical analysis, environmental monitoring, and food safety. In this work, we report a single-pixel-photodetector spectrometer with a spectral range from 480 nm to 820 nm, based on the AlGaAs/GaAs p-graded-n junction with a voltage-tunable optical response. To reconstruct the optical spectrum, we propose a tailored method called Neural Spectral Fields (NSF) that leverages the unique wavelength and bias-dependent responsivity matrix. Our spectrometer achieves a high spectral wavelength accuracy of up to 0.30 nm and a spectral resolution of up to 10 nm. Additionally, we demonstrate the high spectral imaging performance of the device. The compatibility of our demonstration with the standard III-V process greatly accelerates the commercialization of miniaturized spectrometers.
超紧凑型光谱仪因其在生物医学分析、环境监测和食品安全等领域的应用前景而越来越受欢迎。在这项工作中,我们报道了一种单像素光电探测器光谱仪,其光谱范围为480纳米至820纳米,基于具有电压可调光学响应的AlGaAs/GaAs p型渐变n结。为了重建光谱,我们提出了一种名为神经光谱场(NSF)的定制方法,该方法利用了独特的波长和偏置依赖响应矩阵。我们的光谱仪实现了高达0.30纳米的高光谱波长精度和高达10纳米的光谱分辨率。此外,我们展示了该设备的高光谱成像性能。我们的演示与标准III-V工艺的兼容性极大地加速了小型化光谱仪的商业化。