CMOS-compatible reconstructive spectrometers with self-referencing integrated Fabry-Perot resonators.

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作者:You Chunyu, Li Xing, Hu Yuhang, Huang Ningge, Wang Yang, Wu Binmin, Jiang Guobang, Huang Jiayuan, Zhang Ziyu, Chen Bingxin, Wu Yue, Liu Junhan, Chen Xiangzhong, Song Enming, Cui Jizhai, Zhou Peng, Di Zengfeng, An Zhenghua, Huang Gaoshan, Mei Yongfeng
Miniaturized reconstructive spectrometers play a pivotal role in on-chip and portable devices, offering high-resolution spectral measurement through precalibrated spectral responses and AI-driven reconstruction. However, two key challenges persist for practical applications: artificial intervention in algorithm parameters and compatibility with complementary metal-oxide-semiconductor (CMOS) manufacturing. We present a cutting-edge miniaturized reconstructive spectrometer that incorporates a self-adaptive algorithm referenced with Fabry-Perot resonators, delivering precise spectral tests across the visible range. The spectrometers are fabricated with CMOS technology at the wafer scale, achieving a resolution of ~2.5 nm, an average wavelength deviation of ~0.27 nm, and a resolution-to-bandwidth ratio of ~0.46%. Our approach provides a path toward versatile and robust reconstructive miniaturized spectrometers and facilitates their commercialization.

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